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type="mm">537#138</cms:entry><cms:entry id="N12BE4" part="chapter3" ref="N12BE4" type="citenumber">80</cms:entry><cms:entry id="N12BE7" part="chapter3" ref="N12BE7" type="mm">565#149</cms:entry><cms:entry id="N12BFD" part="chapter3" ref="N12BFD" type="citenumber">81</cms:entry><cms:entry id="N12C00" part="chapter3" ref="N12C00" type="mm">519#154</cms:entry><cms:entry id="N12C1D" part="chapter3" ref="N12C1D" type="mm">571#201</cms:entry><cms:entry id="N12C24" part="chapter3" ref="N12C24" type="citenumber">82</cms:entry><cms:entry id="N12C31" part="chapter3" ref="N12C31" type="mm">611#165</cms:entry><cms:entry id="N12C41" part="chapter3" ref="N12C41" type="citenumber">83</cms:entry><cms:entry id="N12C44" part="chapter3" ref="N12C44" type="mm">195#197</cms:entry><cms:entry id="N12C55" part="chapter3" ref="N12C55" type="mm">400#210</cms:entry><cms:entry id="N12C5C" part="chapter3" ref="N12C5C" type="citenumber">84</cms:entry><cms:entry id="N12C71" part="chapter3" ref="N12C71" 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id="_bib295" part="N17D42" ref="_bib295" type="citation"/><cms:entry id="_bib301" part="N17D42" ref="_bib301" type="citation"/><cms:entry id="_bib302" part="N17D42" ref="_bib302" type="citation"/><cms:entry id="_bib4" part="N17D42" ref="_bib4" type="citation"/><cms:entry id="N1A07B" part="N1A07B" ref="N1A07B" type="appendix">Anhang</cms:entry><cms:entry id="N1A07D" part="N1A07B" ref="N1A07D" type="head"/><cms:entry id="N1A080" part="N1A07B" ref="N1A080" type="p"/><cms:entry id="N1A086" part="N1A07B" ref="N1A086" type="p"/><cms:entry id="N1A08C" part="N1A07B" ref="N1A08C" type="p"/><cms:entry id="N1A08E" part="N1A07B" ref="N1A08E" type="table"/><cms:entry id="N1A317" part="N1A07B" ref="N1A317" type="p"/><cms:entry id="N1A326" part="N1A07B" ref="N1A326" type="p"/><cms:entry id="N1A328" part="N1A07B" ref="N1A328" type="table"/><cms:entry id="N1ACE9" part="N1A07B" ref="N1ACE9" type="p"/><cms:entry id="N1ACEF" part="N1A07B" ref="N1ACEF" type="p"/><cms:entry id="N1ACF1" part="N1A07B" ref="N1ACF1" type="table"/><cms:entry id="N1C437" part="N1A07B" ref="N1C437" type="p"/><cms:entry id="N1C43D" part="N1A07B" ref="N1C43D" type="p"/><cms:entry id="N1C43F" part="N1A07B" ref="N1C43F" type="table"/><cms:entry id="N1D1A4" part="N1A07B" ref="N1D1A4" type="p"/><cms:entry id="N1D1B3" part="N1A07B" ref="N1D1B3" type="p"/><cms:entry id="N1D1B5" part="N1A07B" ref="N1D1B5" type="table"/><cms:entry id="N1DBD6" part="N1A07B" ref="N1DBD6" type="p"/><cms:entry id="N1DBDC" part="N1A07B" ref="N1DBDC" type="p"/><cms:entry id="N1DBDE" part="N1A07B" ref="N1DBDE" type="table"/><cms:entry id="N1E562" part="N1E562" ref="N1E562" type="declaration">Selbstängigkeitserklärung</cms:entry><cms:entry part="chapter4" type=":current"/><cms:entry type=":lang">de</cms:entry><cms:entry id=":contents" part="front" ref=":contents" type=":contents">Inhaltsverzeichnis</cms:entry><cms:entry type=":help"><url href="http://...">Hilfe</url></cms:entry></cms:meta><cms:content><chapter id="chapter4" label="4">
         <head>Experimenteller Teil</head>
         <p><citenumber helper="true" id="N12D0E" start="88"/></p>
         <p/>
         <p/>
         <section id="N12D14" label="4.1">
            <head>Allgemeine experimentelle Bedingungen</head>
            <p>
               <citenumber id="N12D1B" start="89"/>Die analytischen Daten wurden mit folgenden Geräten aufgenommen:</p>
            <p>
               <strong>
                  <em>Kernresonanzspektroskopie</em>
               </strong>: Die NMR-Spektren wurden mit den Spektrometern <em>AMX 300</em> bzw. <em>DPX 300</em> der Firma <em>Bruker</em> gemessen. <sup>1</sup>H-NMR-Spektren wurden bei 300 MHz und <sup>13</sup>C-Spektren bei 75 MHz aufgenommen. Als interner Standard diente Tetramethylsilan (&#948; = 0 ppm). Die chemischen Verschiebungen &#948; sind in ppm und die Kopplungskonstanten <em>J</em> in Hz angegeben. Die Zuordnung der <sup>13</sup>C-NMR-Signale wurde anhand der zugehörigen DEPT-Spektren getroffen. Die Interpretation der <sup>1</sup>H-NMR-Spektren basierte häufig auf <sup>1</sup>H-<sup>13</sup>C-COSY- sowie <sup>1</sup>H-<sup>1</sup>H-COSY-Experimenten. Zur Beschreibung der <sup>1</sup>H-NMR-Signale dienen folgende Abkürzungen: s - Singulett, d - Dublett, t - Triplett, q - Quadruplett, m - Multiplett, br - breites Signal. Alle Spektren wurden bei Raumtemperatur aufgenommen. Die Bestimmung von Diastereomerenverhältnissen erfolgte aus dem Verhältnis der Intensitäten der <sup>1</sup>H-NMR-Signale oder aus dem Verhältnis der Intensitäten von <sup>13</sup>C-NMR-Signalen unter Einbeziehung von mindestens drei Signalpaaren. Bei Diastereomerenmischungen wurden, wenn möglich, nur die Verschiebungen des Hauptdiastereomers angegeben.</p>
            <p>
               <strong>
                  <em>Massenspektroskopie</em>
               </strong>: Die hochaufgelösten EI-Massenspektren (EI-HRMS-Spektren) wurden mit einem Gerät der Firma <em>Varian</em> (<em>MAT 711</em>) bei 70 eV aufgenommen, die hochaufgelösten ESI-Massenspektren (ESI-HRMS-Spektren) an einem <em>Finnigan LTQ </em>FT-Massenspektrometer, Thermo Electron (HU-Berlin) gemessen. </p>
            <p>
               <citenumber id="N12D69" start="90"/>
               <strong>
                  <em>Elementaranalyse</em>
               </strong>: Die Elementaranalysen wurden mit einem <em>Leco CHNS 932</em>-Analysator durchgeführt.</p>
            <p>
               <strong>
                  <em>Schmelzpunkte</em>
               </strong>: Die nicht korrigierten Schmelzpunkte wurden mit einem <em>Boetius</em>-Heiztisch-mikroskop der Firma <em>WAGEMA</em> gemessen.</p>
            <p>
               <strong>
                  <em>Spezifische optische Drehung</em>
               </strong>: Die spezifische Drehung wurde an einem <em>Perkin Elmer-241</em> Polarimeter gemessen. Die Messungen erfolgten bei einer Wellenlänge von 589 nm (100 x 3.5 mm Küvette). Die Konzentration <em>c</em> ist in g / 100 ml Lösung angegeben. </p>
            <p>
               <citenumber id="N12D96" start="91"/>
               <strong>
                  <em>Röntgenstrukturanalyse</em>
               </strong>: Die Bestimmung der Kristallstrukturen wurde an einem <em>IPDS-</em> bzw. <em>STADI-4</em> - Diffraktometer der Firma <em>STOE &amp; Cie</em> durchgeführt. Die zugehörigen Daten finden sich im Anhang.</p>
            <p>Angaben zu den experimentellen Bedingungen:</p>
            <p>
               <strong>
                  <em>Dünnschichtchromatographie</em>
               </strong>: Es wurden Kieselgel-60-Aluminiumplatten mit UV-Fluoreszenzindikator F<sub>254</sub> der Firma <em>Merck</em> verwendet. Die Detektion erfolgte durch UV-Licht bzw. die folgenden Reagenzien. 1) Gemisch aus 1.0 g Ce(SO<sub>4</sub>)<sub>2</sub> <sup>.</sup> 4H<sub>2</sub>O und 2.5 g (NH<sub>4</sub>)<sub>6</sub>Mo<sub>7</sub>O<sub>24</sub> <sup>.</sup> 4H<sub>2</sub>O in 100 ml 1.8 M H<sub>2</sub>SO<sub>4</sub>. 2) Iod. 3) Gemisch aus 3.0 g KMnO<sub>4</sub>, 20.0 g K<sub>2</sub>CO<sub>3</sub> und 5 ml 5%ige NaOH in 300 ml H<sub>2</sub>O. 4) 5% Molybdatophosphorsäure in Ethanol. 5) 0.3% Ninhydrin in Ethanol/ Essigsäure</p>
            <p>
               <citenumber id="N12DED" start="92"/>
               <strong>
                  <em>Säulenchromatographie</em>
               </strong>: Als stationäre Phase diente Kieselgel-60 (40 - 63 &#956;m) der Firma <em>Fluka</em> sowie Aluminiumoxid (50 &#8211; 200 &#956;m) der Firma <em>Acros</em>. Aluminiumoxid wurde vor dem Gebrauch aktiviert. Die verwendeten Eluenten wurden vom Gebrauch destilliert. </p>
            <p>
               <strong>
                  <em>HPLC</em>
               </strong>: Für die analytische HPL-Chromatographie wurden die folgenden Geräte unter den angeführten Bedingungen eingesetzt. HPLC-Anlage <em>Waters 2695 Alliance</em>, Photodiode-Array-Detektor <em>996</em> (<em>Waters</em>), ESI-MS-Detektor <em>ZQ 2000</em> (<em>Waters</em>), RP-18-5&#956;m Säule  (2.1 x 150 mm, <em>XTerra</em>), mobile Phase: Wasser : Acetonitril (0 : 100 bis 50 : 50), Fluß : 0.2 ml/min. Die HPLC-Lösungsmittel wurden von Firma <em>Baker</em> bezogen.</p>
            <p>
               <strong>
                  <em>Schutzgastechnik</em>
               </strong>: Als Schutzgas diente Argon 4.8 (Messer-Griesheim). Es wurde eine Wechselhahnanlage mit einer Vakuumpumpe (<em>Vakuumbrand</em>, ca. 5 mbar) verwendet. Die Reaktionsapparaturen wurden mit einem Heißluftfön im Vakuum ausgeheizt, abgekühlt und dann mit Argon befüllt. </p>
            <p>
               <citenumber id="N12E29" start="93"/>
               <strong>
                  <em>Lösungsmittel</em>
               </strong>: Alle verwendeten Lösungsmittel wurden am Rotationsverdampfer von höhersiedenden Verunreinigungen befreit. Lösungsmittel für feuchtigkeitsempfindliche Reaktionen wurden wie folgt behandelt:[<link ref="_bib4">280, </link>] <strong>THF</strong> wurde mit KOH vorgetrocknet, zweimal über Natrium getrocknet und unmittelbar vor Gebrauch unter Argon von Natrium/Benzophenon abdestilliert. <strong>Diethylether</strong> wurde dreimal über Natrium getrocknet und abdestilliert. <strong>Dic</strong>
               <strong>h</strong>
               <strong>lormethan</strong> wurde mehrere Stunden mit Phosphorpentoxid gekocht und anschließend unter Argon abdestilliert. <strong>Toluol</strong> wurde zweimal über Natrium getrocknet und abdestilliert</p>
            <p>
               <strong>
                  <em>Verwendete Reagenzien</em>
               </strong>: Chemikalien wurden von den Firmen <em>Acros</em>, <em>Aldrich</em>, <em>Fluka</em>, <em>Lancaster</em> und <em>Merck</em> bezogen. Alle kommerziell erhältlichen Reagenzien wurden, falls nichts anders angegeben, ohne weitere Reinigung verwendet.</p>
         </section>
         <section id="N12E62" label="4.2">
            <head>Versuchsvorschriften</head>
            <p>
               <strong>Allgemeine Arbeitsvorschrift 1 (AAV1): Suzuki-Kupplungen mit 4-Bromisochoinolinen</strong>
            </p>
            <p>
               <citenumber id="N12E6F" start="94"/>Bromisochinolin <strong>133</strong> (1,04 g; 5 mmol) wurde in 20 ml Dimethoxyethan gelöst. Danach wurden 6,25 mmol (1,25 Äq.) der entsprechenden Arylboronsäure zugegeben. Nach 10 minütigem Rühren wurden 230 mg (0,88 mmol; 0,175 Äq) Triphenylphosphin, 2,10 g Natriumcarbonat (18,75 mmol; 3,75 Äq.) und 250 mg Palladium auf Aktivkohle (20% Pd/C, 52% H<sub>2</sub>O; 0,045 Äq.) in der Reihenfolge zugegeben und die entstandene Suspension mit 10 ml Wasser verdünnt. Diese Reaktionsmischung wurde 5 Stunden bei 90°C (Ölbadtemperatur) unter Rückflußbedingungen gerührt. Nach dem Abkühlen wurde die Mischung filtriert und das Filtrat mit Essigester (3x40 ml) extrahiert. Die Vereinigten organischen Phasen wurden mit Magnesiumsulfat getrocknet, filtriert und das Lösungsmittel am Rotationsverdampfer unter reduziertem Druck entfernt. Nach säulenchromatographischer Reinigung erhält man die substituierten Isochinoline <strong>73</strong> und <strong>183</strong>.</p>
            <p>
               <strong>4-Phenylisochinolin</strong> <strong>73a</strong> </p>
            <p>Nach <strong>AAV 1</strong> reagierten 1,04g (5mmol) Bromisochinolin <strong>133</strong> mit 0,75g Phenylboronsäure, 0,23g Triphenylphosphin, 2,1g Natriumcarbonat und 250mg Palladium auf Aktivkohle zu 861mg (4,2mmol, 84%) 4-Phenylisochinolin <strong>73a</strong>.</p>
            <p>
               <citenumber id="N12E96" start="95"/>Gelblicher Feststoff</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 7.59-7.45 (m, 5H), 7.73-7.61 (m, 2H), 7.95 (d, <em>J = </em>8.08 Hz, 1H), 8.06 (dd, <em>J = </em>7.14, 2.08 Hz, 1H), 8.53 (s, 1H), 9.29 (s, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 124.8 (CH<sub>ar.</sub>), 127.2 (CH<sub>ar.</sub>), 127.9 (CH<sub>ar.</sub>), 128.0 (CH<sub>ar.</sub>), 128.6 (CH<sub>ar.</sub>), 130.1 (CH<sub>ar.</sub>), 130.6 (CH<sub>ar.</sub>), 133.3 (C<sub>q,ar</sub>), 134.2 (C<sub>q,ar</sub>), 137.0 (C<sub>q,ar</sub>), 142.8 (CH<sub>ar.</sub>) 152.0 (CH<sub>ar.</sub>)</p>
            <p>
               <citenumber id="N12EE4" start="96"/>
               <strong>4-(4-Chlorophenyl)isochinolin 73b</strong>
            </p>
            <p>Nach <strong>AAV 1</strong> reagierten 416mg (2mmol) Bromisochinolin <strong>133</strong> mit 390mg 4-Chlorphenylboronsäure, 105mg Triphenylphosphin, 795mg Natriumcarbonat und 63mg Palladium auf Aktivkohle zu 410mg (1,7mmol, 8%) 4-(4-Chlor-phenyl)isochinolin <strong>73b</strong>.</p>
            <p>Gelber Feststoff</p>
            <p>
               <citenumber id="N12EFC" start="97"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; =7.78-7.63 (m, 4H), 7.89 (dd p, <em>J = </em>8.47, 8.47, 8.47, 8.47, 4.20, 1.92 Hz, 3H), 8.09 (d, <em>J = </em>8.37 Hz, 1H), 8.28 (dd, <em>J = </em>7.22, 1.93 Hz, 1H), 8.69 (s, 1H), 9.50 (s, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; =124.4 (CH<sub>ar.</sub>), 127.3 (CH<sub>ar.</sub>), 128.0 (CH<sub>ar.</sub>), 128.9 (CH<sub>ar.</sub>), 130.8 (CH<sub>ar.</sub>), 131.4 (CH<sub>ar.</sub>), 132.1 (C<sub>q,ar.</sub>), 134.0 (C<sub>q,ar.</sub>), 134.1 (C<sub>q,ar.</sub>), 135.4 (C<sub>q,ar.</sub>), 142.7 (CH<sub>ar.</sub>), 152.3 (CH<sub>ar.</sub>)</p>
            <p>
               <strong>EA:</strong> C<sub>15</sub>H<sub>10</sub>ClN </p>
            <p>
               <citenumber id="N12F56" start="98"/>
               <table frame="all" id="N12F59" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="5">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <colspec colname="5" colnum="5"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.1. ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.2. C: 75,16</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.3. H: 4,21</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.4. N: 5,84</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.5. Cl: 14,79</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.6. gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.7. C: 75,97</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.8. H: 4,41</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.9. N: 5,83</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.10. Cl: 14,47</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" nameend="3" namest="1" rotate="0" valign="top">
                              <p>1.1.11. HRMS (EI) <em>m/z</em>: C<sub>15</sub>H<sub>10</sub>ClN</p>
                           </entry>
                           <entry morerows="0" nameend="3" namest="2" rotate="0" valign="top">
                              <p>1.1.12. ber.: 239,0502</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" nameend="3" namest="1" rotate="0" valign="top">
                              <p>1.1.13. </p>
                           </entry>
                           <entry morerows="0" nameend="3" namest="2" rotate="0" valign="top">
                              <p>1.1.14. gef.: 239,0502</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>4-(4-Fluorophenyl)isochinolin 73c</strong>
            </p>
            <p>Nach <strong>AAV 1</strong> reagierten 418mg (2mmol) Bromisochinolin <strong>133</strong> mit 418mg 4-Fluorphenylboronsäure, 105mg Triphenylphosphin, 795mg Natriumcarbonat und 63mg Palladium auf Aktivkohle zu 296mg (1,33mmol, 66%) 4-(4-Fluor-phenyl)isochinolin <strong>73c</strong>.</p>
            <p>
               <citenumber id="N1302E" start="99"/>Gelber Schaum</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 7.13 (t, <em>J = </em>8.68, 8.68 Hz, 2H), 7.39 (dd, <em>J = </em>8.74, 5.40 Hz, 2H), 7.64-7.51 (m, 2H), 7.77 (dd, <em>J = </em>11.85, 4.06 Hz, 1H), 7.98-7.92 (m, 1H), 8.38 (s, 1H), 9.18 (s, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 115.3 (d, J = 21.32 Hz CH<sub>ar.</sub>), 124.5 (CH<sub>ar.</sub>), 127.3 (CH<sub>ar.</sub>), 128.0 (CH<sub>ar.</sub>), 130.7 (CH<sub>ar.</sub>), 131.7 (d, <em>J = </em>8.03 Hz, CH<sub>ar.</sub>), 132.3 (d, <em>J = </em>3.42 Hz, C<sub>q,ar</sub>), 132. (d, <em>J = </em>3.39 Hz, C<sub>q,ar</sub>), 134.2 (C<sub>q,ar</sub>), 142,7 (CH<sub>ar.</sub>), 152.1 (CH<sub>ar.</sub>), 162.7 (d, <em>J = </em>247.48 Hz, C<sub>q,ar</sub>-F)</p>
            <p>
               <citenumber id="N1308B" start="100"/>
               <strong>EA:</strong> C<sub>15</sub>H<sub>10</sub>FN </p>
            <p>
               <table frame="all" id="N1309A" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 80,70</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 4,51</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,27</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 80,49</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 4,77</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,44</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-Menthyl-1-(1H-indol-3-yl)-4-phenylisochinolin-2(1H)-carboxylat</strong>
               <strong> 183a</strong>
            </p>
            <p>
               <citenumber id="N1311E" start="101"/>Nach <strong>AAV 1</strong> reagierten 400mg (0,79mmol) <strong>172o</strong> mit 151mg Phenylboronsäure, 42mg Triphenylphosphin, 795mg Natriumcarbonat und 25mg Palladium auf Aktivkohle zu 383mg (0,76mmol, 96%) <strong>183a</strong>.</p>
            <p>Gelber Schaum</p>
            <p>R<sub>f</sub>: 0,42 (DCM)</p>
            <p>
               <citenumber id="N13136" start="102"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; =1H 0.51-2.13 (m, 18H, Menthyl), 4.86-4.55 (m, 1H, CH-O), 6.78-6.46 (m, 2H, CH<sub>ar.</sub>), 6.86 (t, <em>J = </em>9.66, 9.66 Hz, 1H, CH<sub>ar.</sub>), 7.14 (ddq, <em>J = </em>13.97, 13.97, 13.97, 8.69, 6.42 Hz, 8H, CH<sub>ar.</sub>), 7.46-7.26 (m, 5H, CH<sub>ar.</sub>), 7.99-7.82 (m, 2H, CH<sub>ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.6 (CH<sub>3</sub>), 20.2 (CH), 20.4 (CH<sub>3</sub>), 21.7 (CH<sub>3</sub>), 22.9 (CH<sub>2</sub>), 25.7 (CH), 31.0 (CH), 33.9 (CH<sub>2</sub>), 41.0 (CH<sub>2</sub>), 46.8 (CH), 51.2 (CH-N), 76.1 (CH-O), 110.6 (CH<sub>ar</sub>), 117.0 (C<sub>q,ar</sub>), 119.5 (C=<u>C</u>H-N), 120.0 (CH<sub>ar</sub>), 121.7 (CH<sub>ar</sub>), 122.8 (CH<sub>ar</sub>), 123.6 (CH<sub>ar</sub>), 124,1 (CH<sub>ar</sub>), 126,5 (C<sub>q,ar</sub>), 126.9(CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 132.6 (C<sub>q,ar</sub>), 135.9 (C<sub>q,ar</sub>), 137.3 (C<sub>q,ar</sub>), 152.77 (CO)</p>
            <p>
               <table frame="all" id="N131AE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.15. HRMS (EI) <em>m/z</em>: C<sub>34</sub>H<sub>36</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.16. ber.: 504,27768</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.17. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.18. gef.:504,27767</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N13203" start="103"/>
               <strong>(1R)-Menthyl 4-(4-acetylphenyl)-1-(4-(diethylanilino)-isochinolin-2(1H)-carboxylat</strong>
               <strong> 183b</strong>
            </p>
            <p>Nach <strong>AAV 1</strong> reagierten 390mg (0,73mmol) <strong>172n</strong> mit 150mg 4-Acetylphenylboronsäure, 40mg Triphenylphosphin, 290mg Natriumcarbonat und 25mg Palladium auf Aktivkohle zu 344mg (0,6mmol, 81%) <strong>183b</strong>.</p>
            <p>Hellgelber Schaum</p>
            <p>
               <citenumber id="N1321E" start="104"/>R<sub>f</sub>: 0,375 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0,53-2,10 (m, 24H, Menthyl+2xCH<sub>3</sub>), 2.56 (s, 3H, CH<sub>3</sub>), 3.21 (q, <em>J = </em>7.02, 7.02, 7.01 Hz, 4H, 2x CH<sub>2</sub>), 4.69 (m, 1H, CH-O), 6.45 (d, <em>J = </em>8.54 Hz, 2H, CH<sub>ar.</sub>), 7.17-6.97 (m, 6H, CH<sub>ar.</sub>), 7.47 (t, <em>J = </em>7.59, 7.59 Hz, 2H, CH<sub>ar.</sub>),7.93 (dd, <em>J = </em>8.24, 1.30 Hz, 2H, CH<sub>ar.</sub>), 7.65 u. 7.99 (d, <em>J = </em>8.53 Hz, 1H, CH<sub>ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 12.6 (CH<sub>3</sub>), 20.8 (CH), 22.0 (CH<sub>3</sub>), 26.6 (CH<sub>3</sub>), 31.5 (CH<sub>3</sub>), 34.2 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 44.2 (CH<sub>2</sub>), 47.3 (CH), 57.4(CH), 111.1 (CH<sub>ar</sub>), 123.8 (CH<sub>ar</sub>), 127.3 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 127.7(CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 128.5 (CH<sub>ar</sub>), 128.7 (CH<sub>ar</sub>), 129.0 (CH<sub>ar</sub>), 129.1 (CH<sub>ar</sub>), 135.8, 136.6 (C<sub>q,ar</sub>), 142.9 (C<sub>q,ar</sub>), 144.3 (C<sub>q,ar</sub>), 147.2 (C<sub>q,ar</sub>), 153.7 (CO<sub>2</sub>), 197.7(CO)</p>
            <p>
               <citenumber id="N132B1" start="105"/>
               <table frame="all" id="N132B4" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.19. HRMS (EI): C<sub>38</sub>H<sub>46</sub>N<sub>2</sub>O<sub>3</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.20. ber.: 578,35084</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.21. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.22. gef.: 578,35080</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>AAV 2: Darstellung der</strong>
               <strong>
                  <em> Reissert</em>
               </strong>
               <strong>verbindungen aus Menth</strong>
               <strong>y</strong>
               <strong>lisochinolinium-Salzen </strong>
            </p>
            <p>Zu einer Lösung von 2,00 mmol (-)-(<em>R</em>)-Menthylchloroformiat in 50 ml trockenem Dichlormethan werden bei -40°C 20 mol% wasserfreies AlCl<sub>3</sub> zugesetzt. Zu dieser Lösung wurde nach 5 Minuten langsam unter Feuchtigkeitsausschluß eine Lösung von 2.00 mmol Isochinolin in 5 ml trockenem Dichlormethan zugegeben. Nach dem die Lösung langsam gelb geworden ist (ca. 45-60 min), wurde sie auf -78°C abgekühlt. Anschließend wurden 2.00 mmol des entsprechenden Nucleophils in 20 ml Dichlormethan über 45 min. zugegeben. Die Reaktionsmischung wurde über Nacht gerührt und dabei auf RT erwärmt. Die farblos gewordene Lösung wurde mit 50 ml Wasser versetzt, die Phasen getrennt und die wäßrige Phase noch 3mal mit je 60 ml Dichlormethan extrahiert. Nach dem Trocknen der vereinigten organischen Phasen über MgSO<sub>4</sub> und dem Entfernen des Lösungsmittels in Vakuum wurde das Produkt durch SC gereinigt.</p>
            <p>
               <citenumber id="N13327" start="106"/>
               <strong>1-Cyano-2-(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-menthyloxycarbonyl-1,2-dihydroisochinolin 136a</strong>
            </p>
            <p>Gemäß <strong>AAV 2</strong> reagierten 3.60 ml (3.710 g, 16.96 mmol) (-)-(<em>R</em>)-Menthylchloroformiat, 0.452g (3.39 mmol) AlCl<sub>3</sub>, 2.00 ml (2.192 g, 16.96 mmol) Isochinolin und 1.53 ml (1.68 g, 16.96 mmol) TMSCN zu 5.741 g (16.62 mmol, 98%) <strong>136a</strong>. Im Wasserbad des Rotations-verdampfers (40 °C) ist das Produkt ein zähes farbloses Öl, das bei RT zu einem weißen Feststoff erstarrt. Bei Verunreinigungen (DC-Kontrolle) konnte das Produkt mittels SC (CH<sub>2</sub>Cl<sub>2</sub>) gereinigt werden.</p>
            <p>Weißer Feststoff, F<sub>P</sub> = 37-39°C, [&#945;<mm entity="ID_d3e32561" file="image138.gif" id="N13351" label="20#24"/>= - 59.6° (c = 1, CH<sub>2</sub>Cl<sub>2</sub>), R<sub>f</sub> = 0.80 (Hexan / EtOAc 6:4), R<sub>f</sub> = 0.90 (CH<sub>2</sub>Cl<sub>2</sub>).</p>
            <p>
               <citenumber id="N1336A" start="107"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0.75-2.19 (m, 18 H, Menthyl), 4.75 (m, 1H, CH-O, Menthyl), 6.01 (d, 1H, <em>J </em>= 5.2, C<u>H</u>CH-N), 6.39 (s, 1H, C<u>H</u>-CN), 6.81-6.92 (m, 2H, CH<sub>ar.</sub>), 7.00 (d, 1H, <em>J </em>= 5.2, CHC<u>H</u>-N), 7.11-7.40 (m, 2H, CH<sub>ar.</sub>).</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.8 (CH<sub>3</sub>), 22.2 (<u>C</u>H(CH<sub>3</sub>)<sub>2</sub>), 22.4 (2 CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.6 (<u>C</u>H-CH<sub>3</sub>), 31.8 (CH), 34.4 (CH<sub>2</sub>), 41.5 (CH<sub>2</sub>), 47.5 (CH), 78.6 (CH), 109.1 (<u>C</u>HCH-N), 117.1 (CN), 123.8 (C<sub>ar.</sub>), 124.4 (CH<sub>ar.</sub>), 126.0 (CH<sub>ar.</sub>), 126.8 (CH<sub>ar.</sub>), 128.4 (CH<u>C</u>H-N), 130.4 (CH<sub>ar.</sub>), 130.7 (C<sub>ar.</sub>), 152.3 (CO).</p>
            <p>
               <table frame="all" id="N133D6" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 74.51</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7.75</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 8.28</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 74.71</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7.77</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 8.28</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N13448" start="108"/>
               <strong>EA</strong>: </p>
            <p>
               <strong>1-Cyano-2-(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-menthyloxycarbonyl-4-brom-1,2-dihydroisochinolin 136b</strong>
            </p>
            <p>Nach <strong>AAV 2</strong> wurden 3.60 ml (3.710 g, 16.96 mmol) (-)-(<em>R</em>)-Menthylchloroformiat, 0.452g (3.39 mmol) AlCl<sub>3</sub>, 3.459 g (16.96 mmol) 4-Bromisochinolin und 1.53 ml (1.68 g, 16.96 mmol) TMSCN zu 6.77 g (16.28 mmol, 96%) <strong>136b</strong>. Bei Verunreinigungen (DC-Kontrolle) konnte das Produkt mittels SC (CH<sub>2</sub>Cl<sub>2</sub>) gereinigt werden.</p>
            <p>
               <citenumber id="N13475" start="109"/>Weißer Feststoff, F<sub>P</sub> = 62-64°C, [&#945;<mm entity="ID_d3e33178" file="image138.gif" id="N1347B" label="20#24"/>= - 62.1° (c = 1, CH<sub>2</sub>Cl<sub>2</sub>), R<sub>f</sub> = 0.85 (CH<sub>2</sub>Cl<sub>2</sub>).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0.79-2.20 (m, 18 H, Menthyl), 4.74 (m, 1H, CH-O, Menthyl), 6.41 (s, 1H, C<u>H</u>-CN), 7.18-7.45 (m, 5H, 4 CH<sub>ar.</sub> und Br-C-C<u>H</u>-N),).</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.3 (CH<sub>3</sub>), 20.8 (<u>C</u>H(CH<sub>3</sub>)<sub>2</sub>), 21.9 (2 CH<sub>3</sub>), 23.3 (CH<sub>2</sub>), 26.2 (<u>C</u>H-CH<sub>3</sub>), 30.9 (CH), 34.0 (CH<sub>2</sub>), 41.1 (CH<sub>2</sub>), 47.1 (CH), 78.8 (CH), 84.0 (CH), 103.9 (<u>C</u>-CH-N),  116.2 (CN), 124.7 (CH<sub>ar.</sub>), 126.3 (CH<sub>ar.</sub>), 129.4 (C<sub>ar.</sub>), 130.4 (C-<u>C</u>H-N), 130.4 (CH<sub>ar.</sub>), 149.9 (C<sub>ar.</sub>), 151.0 (CO).</p>
            <p>
               <citenumber id="N134EB" start="110"/>
               <table frame="all" id="N134EE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.23. HRMS (+EI): C<sub>21</sub>H<sub>25</sub>N<sub>2</sub>O<sub>2</sub>Br</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.24. ber.: 416.1099</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.25. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.26. gef.: 416.1099</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>1-Cyano-2-(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-menthyloxycarbonyl-4-phenyl-1,2-dihydroisochinolin 136c</strong>
            </p>
            <p>Nach <strong>AAV 2</strong> wurden 550mg (2,5 mmol) (-)-(<em>R</em>)-Menthylchloroformiat, 65mg (0,5mmol) AlCl<sub>3</sub>, 430mg (2,1mmol) 4-Phenylisochinolin und 210mg (2,1mmol) TMSCN zu 604mg (1,46mmol, 69%) <strong>136c</strong> umgesetzt.</p>
            <p>
               <citenumber id="N1355E" start="111"/>R<sub>f</sub>: 0,85 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0.70-2.10 (m, 18H, Menthyl), 4.75 (m, 1H, CH-O), 6.17 u. 6.83 (d, <em>J </em>= 8.5, 1H, CH<sub>ar</sub>), 6.36 u. 7.01 (d, J = 6.1, 1H, CH<sub>ar</sub>), (7.09 (s, 1H, CH-CN), 7.13-7.29 (m, 3H, CH<sub>ar</sub>), 7.32-7.41 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 21.9 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.5 (CH), 31.4 (CH<sub>3</sub>), 34.1 (CH<sub>2</sub>), 41.1 (CH<sub>2</sub>), 46.1 (CH), 47.1(CH), 78.3 (CH-O), 116.7 (CN), 122.2 (CH<sub>ar.</sub>), 122.8 (C<sub>q,ar</sub>), 125.1 (CH<sub>ar.</sub>), 126.6 (CH<sub>ar.</sub>), 127.9 (CH<sub>ar.</sub>), 128.3 (CH<sub>ar.</sub>), 128.7 (CH<sub>ar.</sub>), 129.3 (CH<sub>ar.</sub>), 129.9 (CH<sub>ar.</sub>), 131.5 (C<sub>q,ar</sub>), 136.2 (C<sub>q,ar</sub>), 152.1 (CO)</p>
            <p>
               <citenumber id="N135C4" start="112"/>
               <table frame="all" id="N135C7" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.27. HRMS (+EI): C<sub>27</sub>H<sub>30</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.28. ber.: 414,23073</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.29. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.30. gef.: 414,23066</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>2-(1R)-Menthyl-1-cyanophthalazin-2(1H)-carboxylat 136d</strong>
            </p>
            <p>Nach <strong>AAV 2</strong> wurden 240mg (1,1mmol) (-)-(<em>R</em>)-Menthylchloroformiat, 30mg (0,2mmol) AlCl<sub>3</sub>, 131mg (1,0mmol) Phthalazin und 100mg (1,1mmol) TMSCN zu 313mg (0,92mmol, 92%) <strong>136d</strong> umgesetzt.</p>
            <p>
               <citenumber id="N1362E" start="113"/>R<sub>f</sub>: 0,32 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0.65-2.1 (m, 18H, Menthyl), 4.83 (m, 1H, CH-O), 6.33 u. 6.35 (s, 1H, CH-CN), 7.32 (t, <em>J = </em>7.59, 7.59 Hz, 2H, CH<sub>ar</sub>), 7.41-7.55 (m, 2H, CH<sub>ar</sub>), 7.74 (s, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; =16.3 (CH<sub>3</sub>), 20.7 (CH), 21.9 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.1 (CH), 31.5 (CH<sub>3</sub>), 34.1 (CH<sub>2</sub>), 40.9 (CH<sub>2</sub>), 43.5(CH), 47.0 (CH), 78.8 (CH-O), 115.6 (CN), 123.4 (C<sub>q,ar</sub>), 125.1 (C<sub>q,ar</sub>), 125.2 (C<sub>q,ar</sub>), 126.4 (CH<sub>ar.</sub>), 126.9 (CH<sub>ar.</sub>), 128.8 (CH<sub>ar.</sub>), 130.7 (CH<sub>ar.</sub>), 132. (CH<sub>ar.</sub>), 142.3 (CH<sub>ar.</sub>), 153.2 (CO),</p>
            <p>
               <citenumber id="N1368E" start="114"/>
               <strong>2-(1R)-Menthyl-1-cyanochinazolin-2(1H)-carboxylat 136e </strong>
            </p>
            <p>Nach <strong>AAV 2</strong> wurden 240mg (1,1mmol) (-)-(<em>R</em>)-Menthylchloroformiat, 28mg (0,2mmol) AlCl<sub>3</sub>, 132mg (1,0mmol) Phthalazin und 100mg (1,1mmol) TMSCN zu 340mg (1,0mmol, quant) <strong>136e</strong> umgesetzt.</p>
            <p>R<sub>f</sub>: 0,14 (DCM)</p>
            <p>
               <citenumber id="N136AC" start="115"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; = 0.65-2.1 (m, 18H, Menthyl), 4.84 (m, 1H, CH-O), 6.08 u. 6.11 (s, 1H, CH-CN), 7.18-7.42 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.3 (CH<sub>3</sub>), 20.7 (CH), 21.9 (CH<sub>3</sub>), 23.3 (CH<sub>2</sub>), 26.6 (CH), 31.5 (CH<sub>3</sub>), 33.9 (CH<sub>2</sub>), 40.6 (CH<sub>2</sub>), 43.7 (CH), 47.0 (CH-CN), 80.1 (CH-O), 116.0 (CN), 120.8 (C<sub>q,ar</sub>), 123.6 (C<sub>q,ar</sub>), 126.6 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 128.5 (CH<sub>ar</sub>), 131.1 (CH<sub>ar</sub>), 140.5 (CH<sub>ar</sub>), 150.9 (CO),</p>
            <p>
               <strong>AAV 3 Alkylierung der Reissert-Verbindung </strong>
            </p>
            <p>
               <citenumber id="N136FD" start="116"/>In einem unter Vakuum ausgeheizten und unter Argonüberdruck abgekühlten Schlenkkolben wurden 338 mg (1mmol) des Nitrils <strong>136a</strong> in 50 ml trockenem THF gelöst. Nach dem die Lösung auf -78°C abgekühlt wurde, wurde sie tropfenweise mit 1,2 ml LDA-Lösung (1,8 M in THF/ Heptan/ Ethylbenzol; 2,2 mmol; 2,2 Äq.) versetzt. Die resultierende dunkelrote Lösung wurde eine Stunde bei dieser Temperatur gerührt. Anschließend wurden 1 mmol (1 Äq.) des betreffenden Alkylierungsmittels in 3 ml trockenem THF langsam über ½ Stunde zugetopft. Die Reaktionsmischung wurde noch ca. 6 h bei -78°C gerührt, wobei ein Farbumschlag von dunkelrot zu dunkelgrün zu beobachten war (DC-Kontrolle des Reaktionsablaufs). Anschließend wurde die Lösung bei -78°C mit 30 ml gesättigter Ammoniumchloridlösung behandelt und dann auf RT aufgetaut. Die Phasen wurden getrennt, die wässrige Phase wurde mit Dichlormethan (3x40 ml) extrahiert. Die vereinigten organischen Phasen wurden über MgSO<sub>4</sub> getrocknet und das Lösungsmittel im Vakuum entfernt. Nach der Reinigung mittels SC (CH<sub>2</sub>Cl<sub>2</sub>) wurden die Alkylierungsproduktes erhalten.</p>
            <p>
               <strong>1-Cyan-1-benzyl-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138a</strong>
            </p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.6-2.3 (m, 18 H, Menthyl); 3.31 (t, 1 H, <em>J</em> = 12.6, ArCH); 3.60-3.95 (m, 1 H, ArCH); 4.70-5.00 (m, 1 H, CH-O); 5.37+5.47 (d+d, 1 H, <em>J</em> = 7.18+8.12); 6.60-7.50 (m, 9H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N1372D" start="117"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.2; 20.9; 22.0; 23.2; 26.5; 31.5; 34.1; 41.0; 46.0 (<u>C</u>H<sub>2</sub>Ph); 47.1; 60.8 (C-CN); 78.1; 105.4 (<u>C</u>H-CH-N); 118.8 (CN); 124.3; 124.7; 127.0; 127.2 (CH<sub>ar</sub>); 127.3; 127.6 (CH<sub>ar</sub>); 127.9 (CH<sub>ar</sub>); 128.0; 129.4 (CH<sub>ar</sub>); 129.5; 130.7; 130.8; 132.9; 152.0 (CO)</p>
            <p>
               <table frame="all" id="N13754" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.31. HRMS (EI): C<sub>28</sub>H<sub>32</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.32. ber.: 428.2464</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.33. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.34. gef.: 428.2465</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>  </p>
            <p>
               <citenumber id="N137A9" start="118"/>
               <strong>1-Cyan-1-(3-methoxybenzyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138b</strong>
            </p>
            <p>87% R<sub>f</sub> = 0,68 (CH<sub>2</sub>Cl<sub>2</sub>) 0,27 (CyH/EE 95:5)</p>
            <p>Farbloses Öl,</p>
            <p>
               <citenumber id="N137C1" start="119"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.7-2.3 (m, 18 H, Menthyl); 3.28 (m, 1 H, ArCH); 3.61 (s, 3 H, OCH<sub>3</sub>); 3.65-3.90 (m, 1 H, ArCH); 4.92 (m, 1 H, CH-O); 5.40 (d, 1 H, <em>J</em> = 7.74 Hz); 6.20 (s, 1H, CH<sub>ar</sub>); 6.42 (d, <em>J</em> = 7.36, CH<sub>ar</sub>); 6.65-6.85 (m, 2H, CH<sub>ar</sub>); 6.94 (m, 1H, CH<sub>ar</sub>); 7.0-7.5 (m, 4H, CH<sub>ar</sub>).</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.2 (CH<sub>3</sub>); 20.9; 22.9; 23.2; 26.5; 31.5; 34.1; 41.0; 46.0 (<u>C</u>H<sub>2</sub>Ph); 47.1; 54.9 (OCH<sub>3</sub>); 60.8 (C1); 78.1; 105.3 (<u>C</u>H-CH-N); 113.7; 115.7; 118.8 (CN); 123.1; 124.4; 124.7; 127.2 (C<sub>ar</sub>H); 128.0 (C<sub>ar</sub>H); 128.8; 128.9 (C<sub>ar</sub>H); 129.4 (C<sub>ar</sub>H); 129.6; 134.3; 152.0 (CO); 159.0 (<u>C</u>OCH<sub>3</sub>).</p>
            <p>
               <table frame="all" id="N1381B" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.35. HRMS (EI) C<sub>29</sub>H<sub>34</sub>N<sub>2</sub>O<sub>3</sub>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.36. ber.: 458.2569</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.37. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.38. gef.: 458.2570</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N1386D" start="120"/>  </p>
            <p>
               <strong>1-(4-Chlor)but-2-enyl-1-cyano-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138c</strong>
            </p>
            <p>84% R<sub>f</sub>: 0,31 (CyH/EE 95:5)</p>
            <p>
               <citenumber id="N1387F" start="121"/>Farbloses Öl</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; 0.59-2.17 (m, 18H, Menthyl), 2.87-2.69 (m, 1H, C<sub>q</sub>-C<u>H</u>
               <sub>2</sub>-CH=), 3.19 (dd, <em>J = </em>14.09, 7.81 Hz, 1Hm C<sub>q</sub>-C<u>H</u>
               <sub>2</sub>-CH=), 3.86-3.55 (m, 2H, CH<sub>2</sub>-Cl), 4.94-4.62 (m, 1H, CH-O), 5.50-5.31 (m, 1H, CH=C<u>H</u>-CH<sub>2</sub>-Cl), 5.60 (d, <em>J = </em>8.17 Hz, 1H, N-CH=C<u>H</u>), 5.80-5.64 (m, 1H, C<u>H</u>=CH-CH<sub>2</sub>-Cl), 6.83 (d, <em>J = </em>8.05 Hz, 1H, N-C<u>H</u>=CH), 6.95 (dd, <em>J = </em>7.09, 1.77 Hz, 1H, CH<sub>ar</sub>), 7.16-7.05 (m, 1H, CH<sub>ar</sub>), 7.20 (dt, <em>J = </em>6.80, 6.66, 1.62 Hz, 2H, CH<sub>ar</sub>), 7.46 (d, <em>J = </em>7.18 Hz, 1H CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; =16.2 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.2 (CH<sub>2</sub>), 26.5 (CH), 31.5 (CH), 34.0 (CH<sub>2</sub>), 37.9 (CH<sub>2</sub>), 38.4 (CH<sub>2</sub>), 40.9 (CH<sub>2</sub>), 47.1 (CH), 59.5 (C<sub>q</sub>), 78.4 (CH-O), 105.5 (<u>C</u>HCH-N), 118.0 (CN), 124.8 (CH<sub>ar.</sub>), 124.95 (CH<sub>ar.</sub>), 125.1 (CH<sub>ar.</sub>), 125.6 (C<sub>q,ar</sub>), 126.8 (CH<sub>ar.</sub>), 127.5 (CH<sub>ar.</sub>), 127.8 (CH<sub>ar.</sub>), 128.3 (CH<sub>ar.</sub>), 129.0 (C<sub>q,ar</sub>), 129.6 (CH<sub>ar.</sub>), 131.6 (CH<sub>ar.</sub>), 151.9 (CO),</p>
            <p>
               <citenumber id="N13927" start="122"/>
               <strong>1-Allyl-1-cyan-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138d</strong>
            </p>
            <p>75% R<sub>f</sub>: 0,56 (CyH/EE 95:5)</p>
            <p>Farbloses Öl, </p>
            <p>
               <citenumber id="N13939" start="123"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.6-2.3 (m, 23 H), 2.70-2.85 (m, 1 H, =CHC<u>H</u>
               <sub>2</sub>), 3.15-3.35 (m, 1 H, =CHC<u>H</u>
               <sub>2</sub>), 4.75-4.95 (m, 1 H, CH-O), 4.95-5.15 (m, 2 H), 5.64 (m, 2 H), 6.80-7.60 (m, 5H, 4*CH<sub>ar </sub>+ CHC<u>H</u>-N).</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.3; 20.8; 22.0; 23.4; 26.5; 31.6; 34.2; 41.1; 45.7 (=CH<u>C</u>H<sub>2</sub>); 47.3; 59.8 (C<sub>q</sub>); 78.2 (CHO); 105.4 (<u>C</u>H-CH-N); 118.6 (CN); 121.5 (=CH<sub>2</sub>); 125-130 viele Signale; 152.0 (C=O).</p>
            <p>
               <table frame="all" id="N1397B" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.39. HRMS (ESI) <em>m/z</em>: C<sub>24</sub>H<sub>30</sub>N<sub>2</sub>O<sub>2</sub>+H<sup>+</sup>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.40. ber.: 379.2380</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.41. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.42. gef.: 379.2380</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N139D3" start="124"/>
               <strong>AAV 4 Alkylierung der Reissert-Anionen mit Elektrophilen</strong>
            </p>
            <p>1 mmol Reissert-Verbindung <strong>136a</strong> und 1 mmol Elektrophil werden in einem Gemisch aus DMF und Et<sub>2</sub>O gelöst (der Ether verhindert Gefrieren des DMF bei Kühlung mit Trockeneis und dient als Lösungsvermittler zwischen DMF und Mineralöl vom Natriumhydrid, kann bei Ar-beiten bei 0 °C auch wegfallen) und unter Schutzgas gerührt. Zu der Lösung wurde NaH (als 60% Dispersion in Mineralöl, an Luft abgewogen) gegeben. Die hellbraun trübe Suspension, welche bei 0 °C sichtbar Gas entwickelt, wird zwei Stunden im Eisbad gerührt. Durch Zugabe von Methanol wird eventuell noch vorhandenes NaH zersetzt. DMF wird abrotiert, der Rück-stand mit Toluol noch mal abrotiert. Einfacher kann das DMF entfernt werden, indem die Lö-sung mit DCM verdünnt und mit Wasser extrahiert wird. Die DCM-Lös. wird noch mit 0,1 M HCl und ges. NaCl gewaschen, mit Magnesiumsulfat getrocknet, über Kieselgel filtriert und einrotiert. Es bleibt ein braunes Öl, welches für R = Benzyl oder Allyl genügend rein für weitere Umsetzung ist. Reinigung kann durch Säulenchromatographie mit CyHex/EtOAc (7:3) oder Dichlormethan erfolgen. </p>
            <p>
               <strong>1-Allyl-1-cyan-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138f</strong>
            </p>
            <p>
               <citenumber id="N139EB" start="125"/>Nach AAV 4 wurden 1,696 g (5,00 mmol) <strong>138a</strong> mit 606 mg (5,0 mmol) Allylbromid in 4 ml DMF + 1 ml Et<sub>2</sub>O mit 202 mg (5,05 mmol) NaH (60% in Öl) bei -78 °C umgesetzt.</p>
            <p>Farbloses Öl, 1,90 g (95%) mit 5% Edukt.</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.6-2.3 (m, 23 H), 2.70-2.85 (m, 1 H, =CHC<u>H</u>
               <sub>2</sub>), 3.15-3.35 (m, 1 H, =CHC<u>H</u>
               <sub>2</sub>), 4.75-4.95 (m, 1 H, CH-O), 4.95-5.15 (m, 2 H), 5.64 (m, 2 H), 6.80-7.60 (m, 5H, 4*CH<sub>ar </sub>+ CHC<u>H</u>-N)</p>
            <p>
               <citenumber id="N13A1B" start="126"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.3; 20.8; 22.0; 23.4; 26.5; 31.6; 34.2; 41.1; 45.7 (=CH<u>C</u>H<sub>2</sub>); 47.3; 59.8 (C<sub>q</sub>); 78.2 (CHO); 105.4 (<u>C</u>H-CH-N); 118.6 (CN); 121.5 (=CH<sub>2</sub>); 125-130 viele Signale; 152.0 (C=O).</p>
            <p>
               <strong>1-Cyan-1-(2-methylallyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138g</strong>
            </p>
            <p>Nach AAV 4 wurden 1,692 g (5,00 mmol) <strong>136a</strong> mit 566 mg (6,25 mmol) Methallylchlorid in 5 ml DMF + 5 ml Et<sub>2</sub>O mit 246 mg (6,15 mmol) NaH (60% in Öl) bei 0 °C umgesetzt. Nach SC 1,94g (99%).</p>
            <p>
               <citenumber id="N13A4B" start="127"/>Farbloses Öl, R<sub>f</sub> = 0,77 (CH<sub>2</sub>Cl<sub>2</sub>).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0,6-2,2 (m, 21 H, Menthyl + Methyl), 2,71 (d, 1 H, <em>J </em>= 13,0, CH<sub>2</sub>), 3,06 (d, 1 H, <em>J</em> = 13,0, CH<sub>2</sub>), 4,53 (s, 1 H, =CH<sub>2</sub>), 4,80(m, 2 H, =CH<sub>2</sub>, CH-O), 5,63 (d, 1 H, <em>J</em> = 8,1, CHC<u>H</u>-N), 6,84 (d, 1 H, <em>J</em> = 7,9, CH<sub>ar</sub>), 6,96 (m, 1H, CH<sub>ar</sub>), 7,18 (m, 2 H, CH<sub>ar</sub>), 7,54 (m, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 15.6; 20.6; 21.8; 23.0; 23.3; 26.2; 31.3; 33.9; 40.8; 46.9; 47.6; 59.4 (C<sub>q</sub>); 77.8 (CHO); 105.5 (<u>C</u>H-CH-N); 117.9 (CN); 118.9 (=CH<sub>2</sub>); 124.4; 124.8; 126.7; 127.2; 128.7; 128.9; 129.2; 138.2 (=C<sub>q</sub>); 151.7 (CO).</p>
            <p>
               <citenumber id="N13AAB" start="128"/>
               <table frame="all" id="N13AAE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.43. HRMS (EI): C<sub>25</sub>H<sub>32</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.44. ber.: 392,2464</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.45. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.46. gef.: 392,2465</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>Chirale HPLC : 9,8 min (100%; 0,5 ml/min Isopropanol/Hexan 3 :97)</p>
            <p>
               <strong>1-Cyan-1-(3-chlorpropyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138h</strong>
            </p>
            <p>
               <citenumber id="N13B09" start="129"/>Nach AAV 4 wurden 338 mg (1,00 mmol) <strong>136a</strong> mit 200 mg (0,98 mmol) 1-Chlor-3-iodpropan in 0,7 ml DMF + 0,3 ml Et<sub>2</sub>O mit 41 mg (1,03 mmol) NaH (60% in Öl) bei RT umgesetzt. Abdestillieren des Lösungsmittels, in 20ml Et<sub>2</sub>O gelöst mit 2*10 ml Wasser waschen, Trocknen, Filtrieren über Kieselgel, Abdestillieren des Ethers lieferte 421 mg (101%) Produkt (10% Edukt). </p>
            <p>Farbloses Öl, R<sub>f</sub> = 0,74 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.5-2.2 (m, 25 H), 2.50-2.90 (m, 1 H), 3.20-3.50 (m, 2 H), 4.65-4.90 (m, 1 H, CH-O), 5.60 (m, 1 H, C<u>H</u>CH-N), 6.80-7.60 (m, 5H, 4*CH<sub>ar </sub>+ CHC<u>H</u>-N)</p>
            <p>
               <citenumber id="N13B36" start="130"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.0; 20.5; 21.7; 23.0; 26.1; 31.2; 33.8; 38.4; 40.7; 43.6; 46.9; 59.1 (C<sub>q</sub>); 77.9 (CHO); 105.0 (<u>C</u>H-CH-N); 118.5 (CN); 125-130 viele Signale; 151.6 (C=O).</p>
            <p>
               <strong>1-Cyan-1-(4-iodbutyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138i</strong>
            </p>
            <p>Nach AAV 4 wurden 339 mg (1,00 mmol) <strong>136a</strong> mit 310 mg 1,4-Diiodbutan in 0,7 ml DMF + 0,3 ml Et<sub>2</sub>O mit 41 mg (1 mmol) NaH (60% in Öl) bei 0 °C umgesetzt. Die säulenchromatographische Reinigung lieferte ein Gemisch von 359 mg (69%) Produkt mit 40 mg (11%) Edukt.</p>
            <p>
               <citenumber id="N13B5D" start="131"/>Farbloses Öl, R<sub>f</sub> = 0,74 (CH<sub>2</sub>Cl<sub>2</sub>).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.70-2.20 (m, 23 H, Menthyl + Butyl); 2.56 (m, 1 H, Butyl); 3.04 (m, 2 H, Butyl); 4.86 (m, 1 H, CHO); 5.67 (d, 1 H, <em>J </em>= 8.10, C<u>H</u>CH-N); 6.94 (d, 1 H, <em>J</em> = 8.30, CHC<u>H</u>-N); 7.03 (d, 1 H, <em>J</em> = 8.90, CH<sub>ar</sub>); 7.26 (m, 2 H, CH<sub>ar</sub>); 7.52 (d, 1 H, <em>J</em> = 8.70, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 5.5 (-CH<sub>2</sub>I); 16.3; 20.8; 21.9; 23.3; 24.0; 26.4; 31.4; 32.5; 34.0; 39.8; 40.9; 47.1; 59.6; 78.1; 105.3 (<u>C</u>H-CH-N); 118.8 (CN); 124.6; 125.0; 126.5; 127.6; 128.2; 129.0; 129.3; 151.8 (CO).</p>
            <p>
               <citenumber id="N13BAB" start="132"/>
               <table frame="all" id="N13BAE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.47. HRMS (EI): C<sub>25</sub>H<sub>33</sub>IN<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.48. ber.: 520.1587</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.49. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.50. gef.: 520.1587</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>1-Cyan-1-(3-iodpropyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138j</strong>
            </p>
            <p>Nach AAV 4 wurden 338 mg (1,00 mmol) <strong>136a</strong> mit 435 mg 1,3-Diiodpropan (1,47 mmol) in 1 ml DMF + 0,5 ml Et<sub>2</sub>O mit 51 mg (1,28 mmol) NaH (60% in Öl) bei 0 °C umgesetzt. SC (30*275, DCM) lieferte ein Gemisch von 322 mg (64%) Produkt mit 28 mg (8%) Edukt.</p>
            <p>
               <citenumber id="N13C0F" start="133"/>Farbloses Öl, R<sub>f</sub> = 0,77 (CH<sub>2</sub>Cl<sub>2</sub>)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.70-2.20 (m, 21 H , Menthyl + Propyl); 2.70 (m, 1 H, Propyl); 3.00 (m, 2 H, Propyl); 4.84 (m, 1 H, CHO); 5.65 (d, 1 H, <em>J </em>= 8.31, C<u>H</u>CH-N); 6.94 (d, 1 H, <em>J</em> = 8.12, CHC<u>H</u>-N); 7.01 (d, 1 H, <em>J</em> = 8.12, CH<sub>ar</sub>); 7.25 (m, 2 H, CH<sub>ar</sub>); 7.53 (d, 1 H, <em>J</em> = 8.13, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 4.4 (-CH<sub>2</sub>I); 16.2; 20.8; 21.9; 23.2; 26.3; 27.0; 31.4; 33.9; 40.9; 47.1; 59.1; 78.2; 105.2 (<u>C</u>H-CH-N); 118.6 (CN); 124.5; 125.1; 126.4; 127.6; 128.0; 128.9; 129.4; 151.7 (CO)</p>
            <p>
               <citenumber id="N13C5D" start="134"/>
               <strong>1-Cyan-1-butyl-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138k</strong>
            </p>
            <p>Nach AAV 4 wurden 339 mg (1,00 mmol) <strong>136a</strong> mit 188 mg 1-Iodbutan (1,00 mmol) in 1,5 ml DMF + 0,5 ml Et<sub>2</sub>O mit 40 mg (1,00 mmol) NaH (60% in Öl) bei RT umgesetzt. Aufarbeitung ohne SC lieferte 375 mg (95%) fast reines Gemisch aus Produkt mit Eduktspuren.</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.60-2.20 (m, 31 H , Menthyl + Butyl); 2.53 (m, 1 H, Butyl); 4.84 (m, 1 H, CHO); 5.63 (t, 1 H, <em>J </em>= 6.89, C<u>H</u>CH-N); 6.97 (m, 2 H); 7.23 (m, 2 H); 7.52 (m, 1 H).</p>
            <p>
               <citenumber id="N13C84" start="135"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 13.7; 16.1; 20.7; 21.9; 22.0; 23.2; 25.0; 26.3; 31.4; 34.0; 40.9; 47.1; 59.9; 77.8; 105.2 (<u>C</u>H-CH-N); 119.1 (CN); 124.6-129.1 (Aromaten, nicht zuzuordnen); 151.8 (CO)</p>
            <p>
               <strong>1-Cyan-1-benzyl-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138a</strong>
            </p>
            <p>Nach AAV 4 wurden 1,695 g (5,00 mmol) <strong>136a</strong> mit 368 mg (5,04 mmol) Benzylchlorid in 3 ml DMF + 2 ml Et<sub>2</sub>O mit 210 mg (5,25 mmol) NaH (60% in Öl) bei 0 °C umgesetzt. Auf-arbeitung lieferte 2,288 g (107%) Rohprodukt, welches durch SC (40*335, DCM, EV 380-600ml) gereinigt wurde: 1,93 g (90%) Produkt mit 0,14 g (8%) Edukt verunreinigt.</p>
            <p>
               <citenumber id="N13CA8" start="136"/>Analytische Daten entsprechen <strong>138a</strong>
            </p>
            <p>Chirale HPLC: 9,4 min + 10,9 min + 11,4 min (90% + 4% + 5%; 0,5 ml/min Isopropanol/Hexan 3:97)</p>
            <p>
               <strong>1-Cyan-1-(2-brombenzyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138l</strong>
            </p>
            <p>
               <citenumber id="N13CBA" start="137"/>Nach AAV 4 wurden 1,35 g (4,0 mmol) <strong>136a</strong> mit 825 mg (4,0 mmol) 2-Brombenzylchlorid in 3 ml DMF + 1 ml Et<sub>2</sub>O bei mit 161 mg (4,0 mmol) NaH (60% in Öl) bei -30 °C umgesetzt. Aufarbeitung lieferte 2,14 g Rohprodukt, welches durch SC (40*345, DCM) gereinigt wurde: 1,667 g (82%) Reinprodukt mit Eduktspuren.</p>
            <p>Hellgelbes Öl, R<sub>f</sub> = 0,84 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.6-2.3 (m, 18 H, Menthyl); 3.46 (m, 1 H, ArCH); 3.95 (m, 1 H, ArCH); 4.86 (m, 1 H, CH-O); 5.56 (d, 1 H, <em>J</em> = 7.93); 6.70-7.50 (m, 9H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N13CE1" start="138"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.1; 20.9; 22.0; 23.1; 26.4; 31.5; 34.0; 41.0; 43.8; 47.0; 47.1; 53.5; 60.9; 78.2; 105.9 (<u>C</u>H-CH-N); 118.4 (CN); 124.5-132.9 (Aromaten); 151.9 (CO).</p>
            <p>
               <strong>1-Cyan-1-(3-methoxybenzyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138m</strong>
            </p>
            <p>Nach AAV 4 wurden 1,692 g (5,00 mmol) <strong>136a</strong> mit 1,946 g (6,58 mmol) 3-Methoxybenzyl-bromid (68%ig) in 5 ml DMF + 5 ml Et<sub>2</sub>O mit 241 mg (6,03 mmol) NaH (60% in Öl) umge-setzt (in 2 h von -20 °C auf 0 °C erwärmt). Bei 6 mbar und 60 °C wurden Kresolmethylether und DMF abdestilliert, der Rückstand  wurde in 25 ml DCM gelöst und mit 2*25 ml Wasser gewaschen, die organische Phase getrocknet, das DCM abdestilliert und der Rückstand über 35 g KG in einer konischen Säule mit DCM eluiert, wobei aus den Produktfraktionen nach Einengen 2,846 g (124%) gewonnen wurden. Erneute Chromatographie über 200 g KG mit DCM in einer Säule 40*350 (EV = 540-1000 ml) gab 2,040 g (89%) Reinprodukt.</p>
            <p>
               <citenumber id="N13D05" start="139"/>Farbloses Öl, R<sub>f</sub> = 0,68 (CH<sub>2</sub>Cl<sub>2</sub>)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.7-2.3 (m, 18 H, Menthyl); 3.28 (m, 1 H, ArCH); 3.61 (d, 3 H, OCH<sub>3</sub>); 3.65-3.90 (m, 1 H, ArCH); 4.92 (m, 1 H, CH-O); 5.39+5.47 (d+d, 1 H, <em>J</em> = 7.74+8.12); 6.20+6.26 (s+s, 1H, CH<sub>ar</sub>); 6.42 (d, <em>J</em> = 7.36, CH<sub>ar</sub>); 6.65-6.85 (m, 2H, CH<sub>ar</sub>); 6.94 (~t, 1H, CH<sub>ar</sub>); 7.0-7.5 (m, 4H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.2; 20.9; 22.9; 23.2; 26.5; 31.5; 34.1; 41.0; 46.0 (<u>C</u>H<sub>2</sub>Ph); 47.1; 54.9 (OCH<sub>3</sub>); 60.8 (C1); 78.1; 105.3 (<u>C</u>H-CH-N); 113.7; 115.7; 118.8 (CN); 123.1; 124.4; 124.7; 127.2 (C<sub>ar</sub>H); 128.0 (C<sub>ar</sub>H); 128.8; 128.9 (C<sub>ar</sub>H); 129.4 (C<sub>ar</sub>H); 129.6; 134.3; 152.0 (CO); 159.0 (<u>C</u>OCH<sub>3</sub>).</p>
            <p>
               <citenumber id="N13D68" start="140"/>
               <table frame="all" id="N13D6B" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.51. HRMS (EI): C<sub>29</sub>H<sub>34</sub>N<sub>2</sub>O<sub>3</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.52. ber.: 458.2569</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.53. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.54. gef.: 458.2570</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>Chirale HPLC: 10,6 min (96%; 0,5 ml/min Isopropanol/Hexan 5:95)</p>
            <p>
               <strong>1-Cyan-1-(2-brommethylbenzyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138n</strong>
            </p>
            <p>
               <citenumber id="N13DC6" start="141"/>Nach AAV 4 wurden 338 mg (1,00 mmol) <strong>136a</strong> mit 324 mg (1,23 mmol) &#945;, &#945;&#8217;-Dibrom-<em>o</em>-xylol in 0,7 ml DMF + 0,3 ml Et<sub>2</sub>O mit 48 mg (1,20 mmol) NaH (60% in Öl) umgesetzt, wobei weitere 1,5 ml Et<sub>2</sub>O zugesetzt wurden damit das Gemisch nach Ausfallen von Salz rührbar bleibt. SC (30*275, DCM) lieferte ein Gemisch aus 350 mg (67%) Produkt und 39 mg (12%) Edukt.</p>
            <p>Weißer Schaum, R<sub>f</sub> = 0,77 (CH<sub>2</sub>Cl<sub>2</sub>)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.7-2.3 (m, 18 H, Menthyl); 3.40-3.70 (m, 2 H, ArCH<sub>2</sub>); 3.70-4.00 (m, 1 H, ArCH<sub>2</sub>); 4.10-4.20 (m, 1 H, ArCH<sub>2</sub>); 4.70-5.10 (m, 1 H, CH-O); 5.70+5.73 (d+d, 1 H, <em>J</em> = 8.31+8.50); 6.80-7.40 (m, 9H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N13E02" start="142"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.1; 20.8; 21.9; 23.0; 26.3; 31.3; 33.9; 40.0; 40.9; 47.0 (<u>C</u>H<sub>2</sub>Ph); 61.0 (C1); 78.0; 105.7 (<u>C</u>H-CH-N); 117.7 (CN); 124.3; 124.8; 126.3; 126.7; 127.6; 128.9; 129.6; 130.5; 131.4; 132.9; 138.0; 151.7 (CO).</p>
            <p>
               <strong>1-Cyan-1-benzyl-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 138a</strong>
            </p>
            <p>Nach AAV 4 wurden 339 mg (1,00 mmol) <strong>136a</strong> mit 230 mg (1,00 mmol) TEBA in 0,7 ml DMF + 0,3 ml Et<sub>2</sub>O mit 40 mg (1,00 mmol) NaH (60% in Öl) bei 0 °C umgesetzt. Nach Auftauen über Nacht wurde mit MeOH gequencht, mit 20 ml Et<sub>2</sub>O versetzt und mit 2*10 ml H<sub>2</sub>O, 5 ml 0,1 M HCl und 5 ml 0,1 M NaOH gewaschen, mit MgSO<sub>4</sub> getrocknet und das Lösungmittel am Rotationsverdampfer entfernt. SC (30*330, EtOAc/CyHex 3:7) lieferte ein Gemisch von 298 mg (69%) Produkt mit 94 mg (28%) Edukt verunreinigt.</p>
            <p>
               <citenumber id="N13E35" start="143"/>Klares hellgelbes Öl, R<sub>f</sub> = 0,84 (EtOAc/CyHex 3:7). NMR wie <strong>138a</strong>.</p>
            <p>
               <strong>Kohlensäure-(-)-menthylester-isochinolin-1-yl-phenyl-methylester 138o</strong>
            </p>
            <p>Nach AAV 4 wurden 338 mg (1,00 mmol) <strong>45a</strong> mit 114 mg (1,1 mmol) Benzaldehyd (ohne Reinigung aus Flasche) in 0,8 ml DMF mit 43 mg (1,1 mmol) NaH (60% in Öl) bei RT umgesetzt. Aufarbeitung und SC (30*330, DCM) lieferte 324 mg Produkt (73%).</p>
            <p>
               <citenumber id="N13E4D" start="144"/>Gelbes Öl, R<sub>f</sub> = 0,61 (DCM) </p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.60-2.15 (m, 18 H, Menthyl); 4.57 (m, 1 H, CH-O); 7.27 (m, 3 H); 7.35-7.65 (m, 6 H); 7.71 (m, 1 H); 8.24 (m, 1 H); 8.57 (m, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.2; 20.8; 22.0; 23.2; 25.8; 26.9; 31.4; 34.1; 40.8; 47.1; 79.4; 120.8; 124.5; 125.6; 127.2; 127.4; 127.5; 128.2; 128.3; 129.6; 136.5; 137.7; 141.5; 154.3; 156.8. (Aromaten-Signale teilweise doppelt so daß keine Zuordnung möglich)</p>
            <p>
               <citenumber id="N13E74" start="145"/>
               <strong>Kohlensäure-(-)-menthylester-isochinolin-1-yl-(4-methoxy-phenyl)-methylester 138p</strong>
            </p>
            <p>Nach AAV 4 wurden 339 mg (1,00 mmol) <strong>136a</strong> mit 144 mg (1,06 mmol) Anisaldehyd (ohne Reinigung aus Flasche) in 2 ml DMF mit 41 mg (1,0 mmol) NaH (60% in Öl) bei RT umgesetzt. Aufarbeitung und SC (30*330, CyHex/EtOAc 7:3) lieferte 202 mg Produkt (45%)</p>
            <p>Gelbes Öl, R<sub>f</sub> = 0,73 (CyHex/EtOAc 7:3)</p>
            <p>
               <citenumber id="N13E89" start="146"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.50-2.10 (m, 18 H, Menthyl); 3.69 (s, 1 H, OCH<sub>3</sub>); 4.51 (m, 1 H, CH-O); 6.82 (d, 2 H, <em>J</em> = 8.12); 7.36 (m, 1 H, <em>J</em> = 7.75); 7.40-7.52 (m, 2 H); 7.57 (m, 2 H); 7.75 (m, 1 H); 8.18 (m, 1 H); 8.56 (m, 1 H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 15.9; 20.7; 21.9; 23.1; 25.7; 26.9; 31.3; 34.1; 40.7; 47.0; 55.1; 78.7; 113.9; 120.7; 124.6; 125.6; 127.3; 127.4; 129.4; 129.8; 136.6; 141.6; 154.5; 157.0; 159.6. (Aromaten-Signale teilweise doppelt so daß keine Zuordnung möglich)</p>
            <p>
               <strong>2-(1</strong>
               <strong>
                  <em>S</em>
               </strong>
               <strong>)-Menthyloxycarbonyl-1,2-dihydroisochinolin-1-carbonsäureamid 144</strong>
            </p>
            <p>
               <citenumber id="N13EC2" start="147"/>1,05g (3,1 mmol) des Nitrils <strong>136a</strong> wurden in 20 ml Aceton gelöst und unter Eiskühlung mit 5 ml 25%iger Ammoniak-Lösung und 7 ml 30%iger H<sub>2</sub>O<sub>2</sub> (60 mmol) versetzt und 2 h weiter bei 0°C gerührt. Anschließend wurde eine Lösung von 6,30 g (60 mmol) Natriumhydrogensulfit in 20 ml Wasser langsam zugetropft, so dass die Temperatur nicht über 0°C stieg. Das Aceton wurde aus dem Reaktionsgemisch unter reduziertem Druck entfernt, der Rückstand 5x mit je 20 ml CH<sub>2</sub>Cl<sub>2</sub> extrahiert, die vereinten organischen Phasen mit MgSO<sub>4</sub> getrocknet und das Lösungsmittel im Vakuum entfernt. Die Reinigung erfolgte säulenchromatographisch (CyH / EE 1:1) und ergab 930 mg (2,61 mmol; 84%) <strong>144</strong> als gelben Feststoff.</p>
            <p>R<sub>f</sub>: 0,31(CyH/EE 1:1)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.75-2.17(m, 18H, Menthyl), 4.94-4.62 (m, 1H, CH-O), 6.34-5.65 (m, 4H, NH<sub>2</sub>, C<u>H</u>=CH-N; C(O)-C<u>H</u>-N), 7.41-6.92 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N13EFE" start="148"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.0 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.241 (CH<sub>2</sub>), 47.2 (CH), 58.5 (CH), 77.5 (CH-O), 107.8 (C<u>H</u>=CH-N), 125.0 (CH<sub>ar</sub>), 127.2 (CH<sub>ar</sub>), 127.3 (CH<sub>ar</sub>), 128.8(CH<sub>ar</sub>), 129.9 (C<sub>q,ar</sub>), 153.1 (CO<sub>2</sub>), 172.0 (C(O)NH<sub>2</sub>)</p>
            <p>
               <table frame="all" id="N13F3A" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.55. HRMS (EI) <em>m/z</em>: C<sub>21</sub>H<sub>28</sub>N<sub>2</sub>O<sub>3</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.56. ber.: 356,20999</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.57. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.58. gef.: 356,20996</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>2-(1</strong>
               <strong>
                  <em>S</em>
               </strong>
               <strong>)-Menthyloxacarbonyl-1-aminomethyl-1,2-dihydroisochinolin 149</strong>
            </p>
            <p>
               <citenumber id="N13F9E" start="149"/>Zu einer Lösung von 340 mg (1 mmol) Nitril <strong>136a</strong> in 30 ml tockenem Ethanol wurden 25 mg Nickel-(II)-Chlorid (0,1 mmol; 0,1 Äq.) gegeben und die Lösung bei RT für 10 Minuten gerührt. Anschließend wurden 266 mg Natriumborhydrid (7 mmol; 7 Äq.) in fünf gleichen Portionen langsam zugegeben (Vorsicht, starke Schaumbildung!). Nach Rühren über Nacht bei RT wurde die Lösung unter reduziertem Druck auf 1/10 eingeengt und mit 60ml Essigester aufgenommen. Nach zweimaligem Waschen mit je 30 ml gesättigter Natriumhydrogencarbonatlösung wurde die organische Phase getrocknet und eingeengt. Die Säulenschromatographische Reinigung ergab 220 mg (0,64 mmol; 64%) des Amins <strong>149</strong> als gelbes Öl.</p>
            <p>R<sub>f</sub>: 0,13(CyH/EE 1:1)</p>
            <p>braunes Öl, </p>
            <p>
               <citenumber id="N13FB3" start="150"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.75-2.11(m, 18H, Menthyl), 2.59-2.99- (m, 1H, CH<sub>2</sub>-NH<sub>2</sub>), 3.49 (ddd, <em>J = </em>19.11, 13.78, 7.26 Hz, 1H, CH<sub>2</sub>-NH<sub>2</sub>), 4.51-4.94- (m, 1H, CH-O), 5.68-5.35 (m, 1H, C<u>H</u>-CH<sub>2</sub>), 5.70-6.00 (m, 1H, C<u>H</u>=CH-N), 6.77-7.35 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.2 (CH), 30.9 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.2 (CH<sub>2</sub>), 47.2 (CH<sub>2</sub>-<u>C</u>H-N), 54.0 (CH<sub>2</sub>-NH<sub>2</sub>), 76.3 (CH-O), 108.1 (<u>C</u>H=CH-N), 124.3 (CH<sub>ar</sub>), 124.9 (C<sub>q,ar</sub>), 126.5 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.7 (CH<sub>ar</sub>), 130.7 (C<sub>q,ar</sub>), 153.2 (CO)</p>
            <p>
               <table frame="all" id="N14022" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.59. HRMS (EI) <em>m/z</em>: C<sub>21</sub>H<sub>30</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.60. ber.: 342,23073</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.61. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.62. gef.: 342,23077</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N14077" start="151"/>
               <strong> (1R)-Menthyloxycarbonyl-1-(aminomethyl)-1,2,3,4-tetrahydroisochinolin 151</strong>
            </p>
            <p>0.7 g (2 mmol) des Amids <strong>14</strong> wurden in THF abs. gelöst und die Lösung mit einem Eisbad gekühlt. Anschließend wurden 0.63 g (16 mmol) NaBH<sub>4</sub> zugegeben. Dabei enstand eine weiße Suspension. Danach wurden mit einer Spritze 2.1 mL (17 mmol) BF<sub>3</sub>
               <sup>. </sup>Et<sub>2</sub>O zugetropft. Das Eisbad wurde entfernt und das Gemisch über Nacht bei Raumtemperatur gerührt. Dann wurde die Lösung mit 5 mL 3M HCl versetzt und erneut über Nacht gerührt. dabei setzte sich ein rötlicher Feststoff ab. Das Lösungsmittel wurde im Vakuum entfernt und der Rückstand in Wasser aufgenommen. Die Mischung wurde mit festem KOH basisch gemacht und 4x mit 50 mL Chloroform extrahiert. Die vereinigten organischen Phasen wurden mit MgSO<sub>4 </sub>getrocknet und das Lösungsmittel unter reduziertem Druck entfernt. Zurück blieb eine ölige Substanz, die mittels Flash-Säulenchromatographie (CH<sub>2</sub>Cl<sub>2</sub>:Aceton = 7:3) gereinigt wurde.</p>
            <p>Ausbeute: 0.39 g (1.1 mmol, 55 %)</p>
            <p>
               <citenumber id="N1409E" start="152"/>R<sub>f</sub> = 0.23 (CH<sub>2</sub>Cl<sub>2</sub>)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) =0.89 &#8211; 2.16 (18 H, m, 18 x C<u>H</u>-Menthyl), 2.80 (2 H, d, J = 12.9 Hz, N<u>H</u>
               <sub>2</sub>), 2.98 (2 H, d, J = 5.4 Hz, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 3.41 (2 H, m, C<u>H</u>
               <sub>2</sub>NH<sub>2</sub>), 4.22 &#8211; 4.16 (2 H, m, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 4.63 (1 H, m, O-C<u>H</u>-Menthyl), 4.98 &#8211; 5.40 (1 H, m, NH<sub>2</sub>CH<sub>2</sub>-C<u>H</u>-N), 7.17 (2 H, m, C<sub>ar</sub>-<u>H</u>), 7.18 (2 H, m, C<sub>ar</sub>-<u>H</u>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 20.7 (<u>C</u>H<sub>3</sub>), 22.0 (2 x <u>C</u>H<sub>3</sub>), 24.3 (<u>C</u>H<sub>2</sub>), 29.2 (<u>C</u>H(CH<sub>3</sub>)<sub>2</sub>), 29.6 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 31.4 (<u>C</u>H-CH<sub>3</sub>), 34.3 (<u>C</u>H<sub>2</sub>), 41.5 (<u>C</u>H<sub>2</sub>), 47.4 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 49.5 (CH-CH<sub>2</sub>-NH<sub>2</sub>), 55.0 (<u>C</u>H-<em>i</em>Pr), 57.8 (CH<sub>2</sub>-<u>C</u>H-N), 75.4 (<u>C</u>H-O-CO), 126.0 (CH<sub>ar</sub>), 126.7 (<u>C</u>H<sub>ar</sub>), 126.8 (<u>C</u>H<sub>ar</sub>), 127.5 (<u>C</u>H<sub>ar</sub>) 127.6 (C<sub>q,ar</sub>), 128.7 (C<sub>q,ar</sub>), 134.9 (C<sub>q,ar</sub>)</p>
            <p>
               <citenumber id="N14179" start="153"/>
               <strong>2-Methoxy-5,6,11,12-tetrahydro-dibenzo[a,e]cycloocten-5,11-imin-11-carbamid 154</strong>
            </p>
            <p>461 mg (0,97 mmol) <strong>138m</strong> wurden in 10 ml Et<sub>2</sub>O gelöst, im Eisbad gekühlt und mit 10 ml 6,6 M HCl in Et<sub>2</sub>O versetzt. Nach neun Tagen war keine Veränderung zu erkennen. Daher wurde der Ether verdampft und der Rückstand in 20 ml 6,6 M HCl in Et<sub>2</sub>O gelöst. Nach fünf Tagen bei 0 °C war ein weißer Niederschlag ausgefallen. Dieser wurde nach Abdestillieren des Ethers in DCM/MeOH (9:1) gelöst, aus der Lösung fielen beim Abkühlen auf -24 °C 50 mg weißer Feststoff aus. Die überstehende Lösung wurde konzentriert und der Rückstand chro-matographisch gereinigt (SC 30*230, DCM/MeOH 9:1): 50 mg (17%) + 178 mg (62%).</p>
            <p>Weißes Pulver, R<sub>f</sub>  = 0,67 (DCM/MeOH 9:1).</p>
            <p>
               <citenumber id="N14197" start="154"/>Fp = 249-251 °C (aus MeOH)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 2.65 (d, 1 H, <em>J</em> = 15.86); 3.11 (q, 2 H, J =); 3.38 (d*d, 1 H, J = 16.06+5.29); 3.60 (s, 3 H, OCH<sub>3</sub>); 4.40 (d, 1 H, J = 4.53); 6.51 (d, 1 H, <em>J</em> = 2.26); 6.65 (d*d, 1H, J = 8.31+2.64); 6.92 (m, 1 H); 7.04 (m, 2H); 7.09 (d, 1H, J = 8.50); 7.15 (m, 1H, NH); 7.32 (m, 1H, NH); 7.44 (m, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 38.2 (CH<sub>2</sub>); 40.5 (CH<sub>2</sub>); 50.2 (CH); 55.3 (OCH<sub>3</sub>); 59.4 (C<sub>q</sub>); 112.8 (<u>C</u>COCH<sub>3</sub>); 113.8 (<u>C</u>COCH<sub>3</sub>); 125.0 (C<sub>ar</sub>H); 126.3 (C<sub>ar</sub>H); 127.3 (C<sub>ar</sub>H); 127.7 (C<sub>ar</sub>H); 129.7; 131.5 (C<sub>q</sub>); 133.6 (C<sub>q</sub>); 135.6 (C<sub>q</sub>); 138.2 (C<sub>q</sub>); 157.9 (<u>C</u>OCH<sub>3</sub>); 177.1 (CONH<sub>2</sub>)</p>
            <p>
               <citenumber id="N141FD" start="155"/>MS: 295 (MH<sup>+</sup>, 100%), 250 (M<sup>+</sup>-CH<sub>2</sub>NO, 40%)</p>
            <p>
               <strong>N-((-)-Menthyloxycarbonyl)-2-Methoxy-5,6,11,12-tetrahydro-dibenzo[a,e]cycloocten-5,11-imin-11-carbonitril 157</strong>
            </p>
            <p>235 mg (0,51 mmol) <strong>138m</strong> wurden in 10 ml DCM gelöst und mit 60 µl (0,53 mmol) Methyl-triflat versetzt. Nach 12 Tagen bei RT hatte sich etwas farbloser Feststoff abgesetzt, welcher durch Zugabe von etwas MeOH gelöst werden konnte. Waschen mit 5 ml ges. NaHCO<sub>3</sub> und Abdestillieren des DCM ergab 201 mg hellgelben Schaum, welcher durch SC (30*260, DCM, EV = 280-420 ml) gereinigt wurde: 152 mg (65%) Produkt.</p>
            <p>
               <citenumber id="N1421B" start="156"/>Fast farbloses Öl, R<sub>f</sub> = 0,70 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.5 &#8211; 2.3 (m, 18H, Menthyl); 2.91 (d, 1 H, <em>J</em> = 16.5, ArCH); 3.21 (m, 1 H, ArCH); 3.58 (m, 1 H, ArCH); 3.72 (s, 3 H, OCH<sub>3</sub>); 4.07 (m, 1 H, ArCH); 4.76 (m, 1 H, CH-O); 5.75 (m, 1H, CH-N); 6.50 (s, 1H); 6.76 (~d, 1 H, CH<sub>ar</sub>); 7.00-7.15 (m, 2H, CH<sub>ar</sub>); 7.22 (t, 1H, J = , CH<sub>ar</sub>); 7.30 (t, 1H, ); 7.70-7.80 (m, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 15.9; 20.6; 22.0; 23.2; 26.1; 31.4; 34.1; 36.5; 41.1; 47.1; 51.8; 55.1 (OCH<sub>3</sub>); 77.5; 113.1; 113.5; 120.6 (CN); 126.7-133.6 (doppelter Datensatz, nicht unterscheidbar); 154.8; 155.6; 158.6 (<u>C</u>OCH<sub>3</sub>).</p>
            <p>
               <citenumber id="N1425A" start="157"/>
               <strong>7-Brom-2-brommethyl-6-methoxy-1,6,7,11b-tetrahydro-2</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>[1,3]oxazino[4,3-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-4-on-11b-carbonitril 159a</strong>
            </p>
            <p>385 mg (1,0 mmol) <strong>138f</strong> wurden in 7 ml DCM + 0,5 ml (12 mmol) MeOH gelöst und im Eis-bad unter Ar gerührt. Eine Lösung von 332 mg (2,1 mmol) Brom in 2 ml DCM wurde wäh-rend 15 min zugetropft und anschließend weitere 15 min gerührt. Die gelbe Lösung wurde mit 3*10 ml Wasser und 10 ml ges. NaHCO<sub>3</sub> gewaschen, getrocknet und das DCM abdestilliert, wobei 634 mg hellgelbes Öl zurückblieben. Beim Lösen in EtOAc/CyHex (3:7) fiel feinkri-stalliner weißer Feststoff aus. Dieser wurde als Suspension auf eine Säule 30*330 gebracht und mit EtOAc/CyHex  (3:7) eluiert (Elutionsvolumen 500-700 ml). Abdestillieren des Lö-sungsmittels lieferte 151 mg weißen Schaum, der aus etwa 5 ml EtOAc heiß umkristallisiert wurde und dabei 97 mg (23%) Kristalle lieferte.</p>
            <p>Farblose klare Kristalle, </p>
            <p>
               <citenumber id="N14281" start="158"/>R<sub>f </sub>= 0,46 (CyHex/EtOAc 7:3)</p>
            <p>Fp = 207-209 °C (Zersetzung)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (DMSO-d<sub>6</sub>): &#948; = 2.27 (d*d, 1 H, <em>J</em> = 12.08, 1.89, 11.90); 3.35 (d*d, 1 H, <em>J</em> = 2.83, 10.96, 3.02); 3.43 (s, 3 H, OCH<sub>3</sub>); 3.81-4.01 (m, 2 H, CH<sub>2</sub>Br); 5.11 (m, 1 H); 5.65 (d, 1 H, <em>J</em> = 2.26); 6.07 (d, 1H, <em>J</em> = 2.26); 7.50-7.71 (m, 4H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N142B1" start="159"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(DMSO-d<sub>6</sub>): &#948; = 36.0 (CH<sub>2</sub>); 38.8 (CH<sub>2</sub>); 45.8 (CHBr); 52.9 (C<sub>q</sub>); 57.7 (OCH<sub>3</sub>); 74.6 (CH-O); 84.9 (<u>C</u>-O CH<sub>3</sub>); 120.5 (CN); 127.3 (C<sub>ar</sub>H); 130.5 (C<sub>ar, q</sub>); 131.2 (C<sub>ar</sub>H); 131.6 (C<sub>ar</sub>H); 131.9 (C<sub>ar</sub>H); 132.7 (C<sub>ar, q</sub>); 151.7 (CO)</p>
            <p>Chirale HPLC : 28,1 min (100%, Isopropanol/Hexan 20 :80)</p>
            <p>
               <strong>EA:</strong> C<sub>15</sub>H<sub>14</sub>N<sub>2</sub>O<sub>3</sub>
            </p>
            <p>
               <citenumber id="N142FC" start="160"/>
               <table frame="all" id="N142FF" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="5">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <colspec colname="5" colnum="5"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 41,89</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 3,23</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,52</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>Br: 37,16</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 41,97</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 3,48</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,81</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>Br: 33,60</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>7-Brom-2-brommethyl-2-methyl-6-methoxy-1,6,7,11b-tetrahydro-2</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>[1,3]oxazino[4,3-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-4-on-11b-carbonitril 159b</strong>
            </p>
            <p>393 mg (1,00 mmol) <strong>138g</strong> wurden in 5 ml DCM + 0,4 ml (10 mmol) MeOH gelöst und im Eisbad gerührt. 711 mg (2,00 mmol) Pyridiumhydrobromid-Perbromid (90% technisch) wurden zugegeben und die Lösung 45 min bei 0 °C gerührt, anschließend mit je 5 ml ges. NaHCO<sub>3</sub>, 5% Na<sub>2</sub>S<sub>2</sub>O<sub>3</sub> und ges. NaCl gewaschen. Die vereinten wässrigen Phasen wurden mit 10 ml DCM reextrahiert und die vereinten organischen Phasen getrocknet (MgSO<sub>4</sub>) und eingeengt. SC (30*255, DCM, EV = 410-570 ml) lieferte 292 mg (66%) weißen Schaum, der beim Zerkleinern mit einem Spatel zu Pulver zerfällt.</p>
            <p>
               <citenumber id="N143B4" start="161"/>Weißes Pulver</p>
            <p>R<sub>f</sub> = 0,31 (CH<sub>2</sub>Cl<sub>2</sub>)</p>
            <p>Fp = 160-162 °C</p>
            <p>
               <citenumber id="N143C9" start="162"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.99 (s, 1 H, CH<sub>3</sub>); 2.72 (q, 2 H, <em>J</em> = 14.16, 17.00, 14.16, CH<sub>2</sub>); 3.51 (q, 2 H, <em>J</em> = 10.76, 22.48, 10.95, CH<sub>2</sub>Br); 3.53 (s, 3 H, OCH<sub>3</sub>); 5.21 (d, 1 H, <em>J</em> = 2.27); 6.08 (d, 1 H, <em>J</em> = 2.27); 7.35-7.55 (m, 4H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 25.8 (CH<sub>3</sub>); 41.3 (CH<sub>2</sub>); 44.0 (CH<sub>2</sub>Br); 44.4 (CHBr); 50.6 (C<sub>q</sub>); 57.5 (OCH<sub>3</sub>); 79.1 (C-O); 83.9 (C-O); 119.3 (CN); 126.1 (C<sub>ar</sub>); 130.0 (C<sub>ar</sub>); 130.2 (C<sub>ar</sub>); 130.3 (C<sub>ar</sub>); 130.8 (C<sub>ar</sub>); 131.2 (C<sub>ar</sub>); 152.0 (CO)</p>
            <p>Chirale HPLC : 22,5 min (100%, Isopropanol/Hexan 20 :80)</p>
            <p>
               <citenumber id="N14429" start="163"/>
               <strong>EA:</strong> C<sub>16</sub>H<sub>16</sub>Br<sub>2</sub>N<sub>2</sub>O<sub>3</sub>
            </p>
            <p>
               <table frame="all" id="N14441" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="5">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <colspec colname="5" colnum="5"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 43,27</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 3,63</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,31</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>Br: 35,98</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 43,28</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 3,78</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,20</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>Br: 33,99</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>AAV 5: Halocyclisierungen mit </strong>
               <strong>
                  <em>Reissert</em>
               </strong>
               <strong>folgeprodukten</strong>
            </p>
            <p>
               <citenumber id="N144D8" start="164"/>0,56 mmol des Carbonsäureamids <strong>144</strong> oder des Amins <strong>149</strong> wurden in 10 ml Dichlormethan gelöst. Zu der klaren Lösung wurde 510 mg (2 mmol; 2Äq.) elementares Jod gegeben. Die nun tiefdunkelrote Reaktionsmischung wurde mit 10 ml gesättigter Natriumhydrogencarbonatlösung versetzt und das entstandene Zweipahsengemisch intensiv über Nacht gerührt. Der Überschuß an Jode wurde durch Zugabe von 20 ml einer gesättigten Natriumsulfitlösung entfernt. Die Phasen wurden getrennt, und die wäßrige Phase wurde mit Dichlormethan extrahiert (3x 40 ml), die vereinten organischen Phasen mit MgSO<sub>4</sub> getrocknet und das Lösungsmittel im Vakuum entfernt. Die Reinigung erfolgte säulenchromatographisch.</p>
            <p>
               <strong>(1R)-Menthyl-</strong>
               <strong>8-iodo-11-oxo-10,12-diazatricyclo-[7.2.1.0</strong>
               <strong>
                  <sup>2,7</sup>
               </strong>
               <strong>]-dodeca-2,4,6-trien-12-carboxylat 160a ChB204 (207)</strong>
            </p>
            <p>98% R<sub>f</sub>: 0,22 (CyH/EE 1:1)</p>
            <p>
               <citenumber id="N144FF" start="165"/>braunes Öl</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.79-2.13 (m, 18 H, Menthyl), 4.60-4.78 (m, 1H, CH-O), 5.23-5.31 (m, 1H, CH-N), 5.93-6.12 (m, 1H, N-CH-N), 7.23-7.75 (m, 5H, <u>C</u>H<sub>ar</sub>, CH-I)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 15.7 (CH<sub>3</sub>), 20.2 (CH<sub>3</sub>), 21.4 (CH<sub>3</sub>), 22.6 (CH<sub>2</sub>). 25.1 (CH-I), 31.4 (CH), 34.0 (CH<sub>2</sub>), 41.2 (CH<sub>2</sub>), 47.1 (CH), 59.8 (CH-C=O), 70.0 (N-CH-N), 76.7 (CH-), 127.1 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.1 (CH<sub>ar</sub>), 130.2 (CH<sub>ar</sub>), 133.9 (C<sub>q,ar</sub>), 140.5 (C<sub>q,ar</sub>), 156.4 (CO<sub>2</sub>), 175.8 (CO)</p>
            <p>
               <citenumber id="N14550" start="166"/>
               <strong>(1R)-Menthyl-8-iodo-10,12-diazatricyclo-[7.2.1.0</strong>
               <strong>
                  <sup>2,7</sup>
               </strong>
               <strong>]-dodeca-2,4,6-trien-12-carboxylat 160b ChB208</strong>
            </p>
            <p>21% Rf: 0,21(DCM/Aceton 7:3)</p>
            <p>braunes Öl, </p>
            <p>
               <citenumber id="N14568" start="167"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.75-2.15 (m, 20H, Menthyl, CH<sub>2</sub>-NH), 4.44-4.86 (m, 1H, CH-O), 5.77-6.05 (m, 1H, CH-N), 6.77-7.65(m, 6H, CH<sub>ar</sub>, CH-I, N-CH-N)</p>
            <p>
               <strong>AAV 6: Cyclisierungen mit </strong>
               <strong>
                  <em>Grignard</em>
               </strong>
               <strong>-Reagenzien</strong>
            </p>
            <p>Die alkylierte Reissert-verbindung <strong>138</strong> (1,00 mmol) wurde in 5 ml trockenem Diethylehter gelöst. Das entsprechende Grignard-Reagenz (3,00 mmol bei einfache Addition, 4,00 mmol bei doppelter Addition; als Lösung in Diethylether oder THF) wurde tropfenweise zu der gerührten Lösung hinzugefügt. Nach drei Stunden wurde die nun trüben Lösung zur Zerstörung von überschüssigem Grignard-Reagenz mit 5 ml Methanol vorsichtig versetzt. Die Reaktionsmischung wurde bis zur Trockene evaporiert und der Rückstand in Essigester aufgenommen. Die Abtrennung der Nebenprodukte erfolgte durch Säulenchromatographie (EtOAc/Cyclohexan 1:1). Eine abschließende Reinigung konne in einigen Fällen durch Kristallisation aus Essigester durch Abdampfen des Lösungsmittels erreicht werden.</p>
            <p>
               <citenumber id="N14595" start="168"/>
               <strong>(1S,10bR)-10b-Allyl-1-ethyl-1,2-dihydroimidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3(10b</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on 165a</strong>
            </p>
            <p>
               <strong>Fp</strong>: 168-175°C</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.18 (t, 3H, <em>J = </em>7.41, CH<sub>3</sub>), 1.90-2.20 (m, 2H, Ethyl), 2.39 (dq, 2H, <em>J = </em>14.37, 14.36, 14.36, 7.19 Hz), 4.09 (m, 1H), 4.88-5.02 (m, 2H, =CH<sub>2</sub>), 5.66-5.82 (m, 2H, =CH-, NH), 5.86 (d, 1H, <em>J = </em>7.43 Hz, 1H), 6.87 (d, 1H, <em>J = </em>7.42 Hz), 7.06-7.14 (m, 2H, CH<sub>ar</sub>), 7.15-7.26 (m, 2H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N145DD" start="169"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 12.2 (CH<sub>3</sub>), 24.1 (CH<sub>2</sub>), 39.7 (CH<sub>2</sub>), 63.5 (C<sub>q</sub>), 64.3 (CH), 107.7 (CH), 118.7 (CH<sub>2</sub>), 122.2 (CH<sub>ar</sub>), 122.5 (CH<sub>ar</sub>), 125.1 (CH<sub>ar</sub>), 126.7 (CH<sub>ar</sub>), 127.7 (CH<sub>ar</sub>), 131.1 (C<sub>q</sub>); 132.6 (CH<sub>ar</sub>), 134.8 (C<sub>q</sub>), 157.1 (CO)</p>
            <p>
               <strong>(1S,10bR)-10b-Benzyl-1-ethyl-1,2-dihydroimidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3(10b</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on 165b</strong>
            </p>
            <p>
               <strong>Fp</strong>: 224-226°C</p>
            <p>
               <citenumber id="N14634" start="170"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.19 (t, 3H, <em>J = </em>7.39, CH<sub>3</sub>), 2.00-2.30 (m, 2H, Ethyl CH<sub>2</sub>), 2.69 (d, 1H, <em>J = </em>13.12 Hz, Ar-CH<sub>2</sub>), 3.06 (d, 1H, <em>J = </em>13.13 Hz, Ar-CH<sub>2</sub>); 4.14 (dd, <em>J = </em>10.82, 2.30 Hz, 1H); 5.23 (d, 1H, <em>J = </em>7.48), 6.57 (d, 1H, <em>J = </em>7.47), 4.60-6.20 (br s, 1H, NH), 6.63-6.70 (m, 2H, CH<sub>ar</sub>), 6.81-6.89 (m, 1H, CH<sub>ar</sub>), 6.98-7.06 (m, 2H, CH<sub>ar</sub>), 7.09-7.17 (m, 1H, CH<sub>ar</sub>), 7.17-7.26 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 12.4 (CH<sub>3</sub>), 24.0 (CH<sub>2</sub>), 43.0 (ArCH<sub>2</sub>), 64.6 (C<sub>q</sub>), 66.0 (CH), 106.7 (CH), 123.1 (CH<sub>ar</sub>), 123.1 (CH<sub>ar</sub>), 124.8 (CH<sub>ar</sub>), 126.3 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.3 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 130.7 (CH<sub>ar</sub>), 132.3 (C<sub>q</sub>), 133.5 (C<sub>q</sub>), 135.5 (C<sub>q</sub>), 157.6 (CO)</p>
            <p>
               <strong>10b-Butyl-1,1-dimethyl-1,2-dihydroimidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3(10b</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on 166b</strong>
            </p>
            <p>
               <citenumber id="N146C7" start="171"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.76 (t, 3 H, <em>J</em> = 7,22, CH<sub>3</sub>); 0.95-1.25 (m, 3 H, Butyl); 1,21 (s, 3 H, CH<sub>3</sub>); 1.35-1.70 (m, 2 H, Butyl); 1.61 (s, 3 H, CH<sub>3</sub>); 1.90-2.10 (m, 1 H, Butyl); 5.56 (d, 1 H, <em>J = </em>7.58 Hz); 5.60-6.00 (br s, 1H, NH); 6.86 (d, 1 H, <em>J = </em>7.56 Hz); 6.92-7.04 (m, 2H, CH<sub>ar</sub>); 7.04-7.18 (m, 2H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 13.9 (CH<sub>3</sub>); 22.8 (CH<sub>3</sub>); 23.1 (CH<sub>2</sub>); 25.6 (CH<sub>2</sub>); 27.6 (CH<sub>3</sub>); 40.1 (CH<sub>2</sub>); 63.8 (Cq); 67.9 (Cq); 105.3 (CH); 123.6 (CH); 124.4 (CH); 125.0 (CH); 126.1 (CH); 127.4 (CH); 132.2 (Cq); 132.3 (Cq); 157.6 (CO)</p>
            <p>
               <strong>10b-Benzyl-1,1-dimethyl-1,10b-dihydro-2</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>-imidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3-on 166c</strong>
            </p>
            <p>
               <citenumber id="N1472A" start="172"/>
               <strong>Fp</strong>: 237.0-237.5°C</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.32 (s, 3H, CH<sub>3</sub>), 1.77 (s, 3H, CH<sub>3</sub>), 2.77 (d, 1H, <em>J = </em>12.65 Hz, Ar-CH<sub>2</sub>), 3.34 (d, 1H, <em>J = </em>12.66 Hz, Ar-CH<sub>2</sub>), 4.40-5.60 (br s, 1H, NH), 4.93 (d, 1H, <em>J = </em>7.57 Hz), 6.44 (d, 1H, <em>J = </em>7.56 Hz), 6.60-6.67 (m, 2H, CH<sub>ar</sub>), 6.69-6.75 (m, 1H, CH<sub>ar</sub>), 6.95-7.05 (m, 2H, CH<sub>ar</sub>), 7.08-7.25 (m, 4H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 22.9 (CH<sub>3</sub>); 27.6 (CH<sub>3</sub>); 45.2 (CH<sub>2</sub>); 64.2 (Cq); 69.1 (Cq); 104.8 (CH); 123.3 (CH); 124.8 (CH); 125.1 (CH); 126.1 (CH); 126.2 (CH); 127.3; 127.9; 130.8;L 131.0 (Cq); 133.2 (Cq); 135.9; 157.1 (CO)</p>
            <p>
               <citenumber id="N1477E" start="173"/>
               <strong>1,1-Diallyl-10b-benzyl-1,2-dihydroimidazo[5,1-a]isochinolin-3(10b</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on (166d)</strong>
            </p>
            <p>
               <strong>Fp</strong>: 162-164 °C</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 2.32-2.44 (m, 1 H), 2.45-2.56 (m, 1 H), 2.73-86 (m, 1H), 2.77 (d, <em>J</em> = 12.29, 1H, ArCH<sub>2</sub>), 3.00-3.11 (m, 1H), 3.31 (d, <em>J</em> = 12.41, 1H, ArCH<sub>2</sub>), 4.77-4.86 (m, 1H), 4.88-4.98 (m, 2H), 5.30-5.41 (m, 2H), 5.41-5.58 (m, 1H), 5.93-6.15 (m, 2H), 6.39 (d, 1H, <em>J</em> = 7.59), 6.59-6.65 (m, 2H), 6.67-6.73 (m, 1H), 6.96-7.05 (m, 2H), 7.09-7.25 (m, 3H), 7.29-7,35 (m, 1H).</p>
            <p>
               <citenumber id="N147B4" start="174"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 39.5 (CH<sub>2</sub>), 41.9 (CH<sub>2</sub>), 46.3 (CH<sub>2</sub>), 68.3 (Cq), 68.9 (Cq), 104.4 (CH); 119.3 (CH<sub>2</sub>), 120.1 (CH<sub>2</sub>), 123.0 (CH), 124.9 (CH), 125.2 (CH), 125.9 (CH), 126.2 (CH), 127.1 (CH), 127.8 (CH), 130.4 (Cq), 131.0 (CH), 131.2 (CH), 133.2 (CH), 133.5 (Cq), 135.2 (Cq), 157.3 (CO).</p>
            <p>Die Reissert-Verbindung <strong>136a</strong> (1.00 mmol) wurde in 20 ml trockenem THF gelöst und auf 0°C gekühlt. Anschließend wurde eine Allylmagnesiumchlorid Lösung (2.0M in THF, 5ml, 10eq.) langsam zugetropft. Nach 2tägigem Rühren bei Rt wurde überschüssiges Grignard-Reagenz zu vorsichtige Zugabe von 20 ml gesättigter Ammoniumchloridlösung zerstört. Die Phasen wurden getrennt und die wäßrige Phase noch dreimal mit je 50 ml Essigester extrahiert. Die vereinigtern organischen Phasen wurden über Magnesiumsulfat getrocknet und das Lösungsmittel unter reduziertem Druck entfernt. Die Reinigung erfolgte durch Säulenchromatographie (DCM/acetone 8:2) und ergab <strong>166a </strong>(120 mg, 0.568 mmol, 57%) als gelb-braunes Öl und <strong>164</strong> (75 mg, 0.33 mmol, 33%) als braunes Öl.</p>
            <p>
               <strong>1,1-Diallyl-1,2-dihydroimidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3(10b</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on 166a:</strong>
            </p>
            <p>
               <citenumber id="N147F9" start="175"/>R<sub>f</sub>: 0.44 (DCM/(CH<sub>3</sub>)<sub>2</sub>C=O 8:2)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): #SYMBOL#&#948; = 2.25 (dd, <em>J = </em>14.02, 7.99 Hz, 1H), 2.45-2.58 (m, 2H), 2.70 (dd, <em>J = </em>14.52, 5.95 Hz, 1H), 4.92 (dd, <em>J = </em>19.73, 13.54 Hz, 2H), 5.11 (d, <em>J = </em>4.79 Hz, 1H), 5.16 (d, <em>J = </em>4.49 Hz, 2H), 5.54 (d, <em>J = </em>7.63 Hz, 1H), 5.56-5.68 (m, 1H), 5.73-5.99 (m, 2H), 6.68 (d, <em>J = </em>7.57 Hz, 1H), 6.91 (d, <em>J = </em>6.93 Hz, 1H, CH<sub>ar</sub>), 6.97-7.17 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 40.4 (CH<sub>2</sub>), 42.9 (CH<sub>2</sub>), 60.2 (CH), 64.6 (C<sub>q</sub>), 105.6 (CH), 119.4 (CH<sub>2</sub>), 120.0 (CH<sub>2</sub>), 122.8 (CH), 124.4 (CH), 125.7 (CH), 126.3 (CH), 127.9 (CH), 131.1 (CH), 132.4 (C<sub>q</sub>), 132.7 (CH), 156.7 (C=O)</p>
            <p>
               <citenumber id="N14856" start="176"/>
               <table frame="all" id="N14859" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.63. HRMS (EI) <em>m/z</em>: C<sub>17</sub>H<sub>18</sub>N<sub>2</sub>O</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.64. ber.: 266,1419</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.65. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.66. gef.: 266,1404</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>1-Allylimidazo[5,1-</strong>
               <strong>
                  <em>a</em>
               </strong>
               <strong>]isochinolin-3(2</strong>
               <strong>
                  <em>H</em>
               </strong>
               <strong>)-on 164:</strong>
            </p>
            <p>R<sub>f</sub>: 0.09 (DCM/(CH<sub>3</sub>)<sub>2</sub>C=O 8:2)</p>
            <p>
               <citenumber id="N148CF" start="177"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 3.59 (m, 2 H, C<u>H</u>
               <sub>2</sub>-CH=CH<sub>2</sub>), 5.05-5.20 (m, 2 H, =CH<sub>2</sub>), 5.85-6.00 (m, 1 H, -C<u>H</u>=CH<sub>2</sub>), 6.19 (d, 1 H, <em>J</em> = 7.61 Hz, ), 7.11-7.27 (m, 3 H, CH<sub>ar</sub>), 7.30 (d, 1 H, <em>J</em> = 7.61 Hz ), 7.50-7.55 (m, 1H, CH<sub>ar</sub>), 11.26 (s, 1H, NH)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 30.4 (CH<sub>2</sub>), 110.4 (C<sub>q</sub>-NH), 111.8 (C<sub>q</sub>), 115.4 (C<sub>q</sub>), 117.3 (=CH<sub>2</sub>); 120.3 (<u>C</u>H<sub>ar</sub>), 122.5 (<u>C</u>H<sub>ar</sub>), 125.9; 126.7 (<u>C</u>H<sub>ar</sub>), 127.0 (<u>C</u>H<sub>ar</sub>), 127.8 (<u>C</u>H<sub>ar</sub>), 129.0 (C<sub>q,ar</sub>), 132.8 (C<sub>q,ar</sub>), 148.9 (C=O)</p>
            <p>
               <strong>AAV 7: Reaktionen von </strong>
               <strong>
                  <em>N</em>
               </strong>
               <strong>-Acylisochinoliniumsalzen mit elektronenreichen Arom</strong>
               <strong>a</strong>
               <strong>ten</strong>
            </p>
            <p>
               <citenumber id="N14956" start="178"/>Zu einer Lösung von 2,00 mmol (-)-(<em>R</em>)-Menthylchloroformiat in 50 ml trockenem Dichlormethan werden bei -40°C 20 mol% wasserfreies AlCl<sub>3</sub> zugesetzt. Zu dieser Lösung wurde nach 5 Minuten langsam unter Feuchtigkeitsausschluß eine Lösung von 2,00 mmol Isochinolin in 5 ml trockenem Dichlormethan zugegeben. Nachdem die Lösung langsam gelb geworden ist (ca. 45-60 min), wurde sie auf -78°C abgekühlt. Anschließend wurden 2,00 mmol des entsprechenden elektronenreichen Aromaten in 20 ml Dichlormethan über 45 Minuten zugegeben. Die Reaktionsmischung wurde über Nacht gerührt und dabei auf RT erwärmt. das Lösungsmittels wurde in Vakuum entfernt und der Rückstand säulenchromatographisch gereinigt.</p>
            <p>
               <strong>(1R)-Menthyl-1-(4-(dimethylamino)-naphthalen-1-yl)isochinolin-2(1H)-carboxylat 172a</strong>
            </p>
            <p>57% hellgelber Schaum</p>
            <p>
               <citenumber id="N1496B" start="179"/>R<sub>f</sub>: 0,63(DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; =0.4-2.13 (m, 18H, Menthyl), 2.81 (s, 6H, N(C<u>H</u>
               <sub>3</sub>)<sub>2</sub>), 4.50 (m, 1H, CH-O), 5.88 (d, <em>J = </em>7.55 Hz, 1H, C<u>H</u>=CH-N), 6.79-7.43 (m, 7H, CH<sub>ar</sub>), 7.44-7.56 (m, 1H, CH<sub>ar</sub>), 7.55-7.85 (m, 2H, CH<sub>ar</sub>), 8.28 (d, <em>J = </em>8.22 Hz, 1H, CH<sub>ar</sub>), 8.37-8.96 (m, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; =16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.3 (CH<sub>2</sub>), 26.4 (CH), 31.4 (CH), 34.1 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 45.2 (CH), 46.6 , 54.3 (CH), 76.3 (CH), 105.6 (<u>C</u>H=CH-N), 114.3 (CH<sub>ar</sub>), 123.5 (CH<sub>ar</sub>), 124.7 (CH<sub>ar</sub>), 125.3 (CH<sub>ar</sub>), 126.0 (C<sub>q,ar</sub>), 126.2 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.8 (C<sub>q,ar</sub>), 133.8 (C<sub>q,ar</sub>), 137.6 (C<sub>q,ar</sub>), 137.9 (C<sub>q,ar</sub>), 150.5 (C<sub>q,ar</sub>), 153.7(CO),</p>
            <p>
               <citenumber id="N149F2" start="180"/>
               <strong>EA:</strong> C<sub>32</sub>H<sub>38</sub>N<sub>2</sub>O<sub>2</sub>
            </p>
            <p>
               <table frame="all" id="N14A07" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 79.63</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7.94</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 5.80</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 79,50</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,34</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 5,57</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <table frame="all" id="N14A79" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.67. HRMS (EI) <em>m/z</em>: C<sub>32</sub>H<sub>38</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.68. ber.: 482,29333</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.69. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.70. gef.: 482,29337</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N14ACE" start="181"/>
               <strong> (1R)-Menthyl-1-(2-hydroxy-4-morpholinophenyl)isochinolin-2(1H)-carboxylat 172b</strong>
            </p>
            <p>70% weißer Schaum</p>
            <p>R<sub>f</sub>: 0,22 (DCM )</p>
            <p>
               <citenumber id="N14AE0" start="182"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 3.03 (dd, <em>J = </em>5.42, 4.31 Hz, 4H, CH<sub>2</sub>-N), 3.68-3.75 (m, 4H, CH<sub>2</sub>-O), 4.57-4.80 (m, 1H, CH-O), 5.93 (t, <em>J = </em>7.36, 7.36 Hz, 1H, C<u>H</u>=CH-N), 6.14 (td, <em>J = </em>8.47, 2.77, 2.77 Hz, 1H, CH<sub>ar</sub>), 6.29-6.49 (m, 3H, CH<sub>ar</sub>), 6.58 (dd, <em>J = </em>11.00, 7.92 Hz, 1H, CH<sub>ar</sub>), 6.93 (d, <em>J = </em>7.44 Hz, 1H, CH=C<u>H</u>-N), 7.04-7.16 (m, 2H, CH<sub>ar</sub>), 7.15-7.25 (m, 1H, CH<sub>ar</sub>), 9.26 (s, 1H, OH)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.4 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.1 (CH), 31.4 (CH), 34.1 (CH<sub>2</sub>), 41.1 (CH<sub>2</sub>), 47.1 (CH), 48.4 (CH<sub>2</sub>-N), 52.2 (CH), 67.0 (CH<sub>2</sub>-O), 78.0 (CH-O), 104.1 (CH<sub>ar</sub>), 107.1 (<u>C</u>H=CH-N), 109.9 (CH<sub>ar</sub>), 119.1 (C<sub>q,ar</sub>), 123.5 (CH<sub>ar</sub>), 124.7 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 130.5 (C<sub>q,ar</sub>), 131.3(<u>C</u>H=CH-N), 131.9 (C<sub>q,ar</sub>), 152.1 (CO), 154.8 (C<sub>q,ar</sub>), 155.1 (C<sub>q,ar</sub>)</p>
            <p>
               <table frame="all" id="N14B6A" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.71. HRMS (EI) <em>m/z</em>: C<sub>30</sub>H<sub>38</sub>N<sub>2</sub>O<sub>4</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.72. ber.: 490,28316</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.73. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.74. gef.: 490,28315</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N14BBF" start="183"/>
               <strong>(1R)-Menthyl-1-(1-methyl-1H-pyrrol-2-yl)isochinolin-2(1H)-carboxylat 172c</strong>
            </p>
            <p>42%, hellroter Schaum</p>
            <p>R<sub>f</sub>: 0,48(DCM)</p>
            <p>
               <citenumber id="N14BD1" start="184"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 3.48 (s, 3H, N-CH<sub>3</sub>), 4.70-4.85 (m, 1H, CH-O), 5.83 (dd, <em>J = </em>7.61, 2.21 Hz, 1H, C<u>H</u>=CH-N), 5.88-5.99 (m, 1H, CH<sub>ar</sub>), 6.00-6.17 (m, 1H, CH<sub>ar</sub>), 6.18-6.34 (m, 1H, CH<sub>ar</sub>), 6.37-6.54 (m, 1H), 6.79 (t, <em>J = </em>7.30, 7.30 Hz, 1H, CH<sub>ar</sub>), 6.97-7.37 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.2 (CH), 31.4 (CH), 34.3 (CH<sub>2</sub>), 36.1 (N-CH<sub>3</sub>), 41.2 (CH<sub>2</sub>), 47.3 (CH), 52.2 (CH), 107.6 (CH<sub>ar</sub>), 107.9 (<u>C</u>H=CH-N), 108.2 (CH<sub>ar</sub>), 120.4 (CH<sub>ar</sub>), 121.6 (CH<sub>ar</sub>), 124.5 (CH<sub>ar</sub>), 124.7 (CH<sub>ar</sub>), 125.4 (C<sub>q,ar</sub>), 125.7 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 130.6 (C<sub>q,ar</sub>), 132.6 (C<sub>q,ar</sub>), 153.1 (CO)</p>
            <p>
               <strong>EA:</strong> C<sub>25</sub>H<sub>32</sub>N<sub>2</sub>O<sub>2</sub>
            </p>
            <p>
               <citenumber id="N14C5B" start="185"/>
               <table frame="all" id="N14C5E" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 75,88</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,10</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,81</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 76,49</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,22</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 7,14</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <table frame="all" id="N14CD0" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.75. HRMS (EI) <em>m/z</em>: C<sub>25</sub>H<sub>32</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.76. ber.: 392,24628</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.77. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.78. gef.: 392,24632</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(4-</strong>
               <strong>
                  <em>tert</em>
               </strong>
               <strong>-butyl-2-(pyrrolidin-1-yl)thiazol-5-yl)isochinolin-2(1H)-carboxylat 172d</strong>
            </p>
            <p>
               <citenumber id="N14D34" start="186"/>62%, gelber Schaum</p>
            <p>R<sub>f</sub>: 0,27(DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.65-2.01 (m, 27H, Menthyl+<em>t</em>-Butyl)3.22 (t, <em>J = </em>6.35, 6.35 Hz, 4H, 2xCH<sub>2</sub>), 3.36 (t, <em>J = </em>6.54, 6.54 Hz, 4H, 2xCH<sub>2</sub>-N), 4.62 (m, 1H, CH-O), 5.83 (d, <em>J = </em>7.80 Hz, 1H, C<u>H</u>=CH-N), 6.83 (s, 1H, CH-N), 7.02-6.95 (m, 1H, CH<sub>ar</sub>), 7.06 (dt, <em>J = </em>6.41, 6.40, 1.61 Hz, 2H, CH<sub>ar</sub>), 7.22-7.10 (m, 2H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N14D70" start="187"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.1 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 25.7 (CH<sub>2</sub>), 26.3 (CH), 29.7 (CH), 31.3 (CH<sub>3</sub>), 34.2 (CH<sub>2</sub>), 37.5 (<u>C</u>(CH<sub>3</sub>)<sub>3</sub>), 41.2 (CH<sub>2</sub>), 47.2 (CH), 48.9 (CH<sub>2</sub>), 51.9 (CH), 76.6 (CH-O), 96.8 (<u>C</u>H=CH-N), 120.6 (CH<sub>ar</sub>), 125.0 (CH<sub>ar</sub>), 126.4 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 129.0 (C<sub>q,ar</sub>), 133.9 (C<sub>q,ar</sub>)</p>
            <p>
               <table frame="all" id="N14DBE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.79. HRMS (EI) <em>m/z</em>: C<sub>31</sub>H<sub>43</sub>N<sub>3</sub>O<sub>2</sub>S</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.80. ber.: 521,30760</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.81. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.82. gef.: 521,30763</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(6-hydroxybenzo[d][1,3]dioxol-5-yl)isochinolin-2(1H)-carboxylat 172e</strong>
            </p>
            <p>
               <citenumber id="N14E19" start="188"/>33%, weißer Schaum</p>
            <p>R<sub>f</sub>: 0,57 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; =0.62-2.13 (m, 18H, Menthyl), 4.74 (dq, <em>J = </em>10.77, 10.77, 10.77, 4.40 Hz, 1H, CH-O), 5.77 (s, 2H, O-CH<sub>2</sub>-O), 5.97 (t, <em>J = </em>7.49, 7.49 Hz, 1H, C<u>H</u>=CH-N), 6.10 (d, <em>J = </em>11.52 Hz, 1H, CH<sub>ar</sub>), 6.57-6.45 (m, 2H, CH<sub>ar</sub>), 6.70 (dd, <em>J = </em>11.45, 7.84 Hz, 1H, CH<sub>ar</sub>), 6.99 (d, <em>J = </em>7.70 Hz, 1H, CH<sub>ar</sub>), 7.16 (dd, <em>J = </em>11.77, 5.92 Hz, 2H, CH<sub>ar</sub>), 7.25 (t, <em>J = </em>7.05, 7.05 Hz, 1H, CH<sub>ar</sub>), 9.16 (s, 1H, OH)</p>
            <p>
               <citenumber id="N14E61" start="189"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.3 (CH), 31.4 (CH), 34.1 (CH<sub>2</sub>), 41.1 (CH<sub>2</sub>), 47.2 (CH), 52.6 (CH), 78.1 (CH-O), 100.1 (CH<sub>ar</sub>), 101.0 (O-CH<sub>2</sub>-O), 109.0 (<u>C</u>H=CH-N), 109.6 (CH<sub>ar</sub>), 120.3 (C<sub>q,ar</sub>-CH), 123.5 (CH<sub>ar</sub>), 125.0 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.1 (CH<sub>ar</sub>), 130.2 (C<sub>q,ar</sub>), 132.0 (C<sub>q,ar</sub>), 141.2 (C<sub>q,ar</sub>-O), 148.0 (C<sub>q,ar</sub>-O), 149.0 (C<sub>q,ar</sub>-OH), 155.3 (CO)</p>
            <p>
               <strong>EA:</strong> C<sub>27</sub>H<sub>31</sub>NO<sub>5</sub>
            </p>
            <p>
               <table frame="all" id="N14EBE" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 72,14</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 6,95</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,12</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 72,27</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,29</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,09</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N14F30" start="190"/>
               <table frame="all" id="N14F33" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.83. HRMS (EI) <em>m/z</em>: C<sub>27</sub>H<sub>31</sub>NO<sub>5</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.84. ber.: 449,22022</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.85. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.86. gef.: 449,22021</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(thieno[3,4-d][1,3]dioxol-4-yl)isochinolin-2(1H)-carboxylat 172f </strong>
            </p>
            <p>39%, weißerSchaum</p>
            <p>
               <citenumber id="N14F8E" start="191"/>R<sub>f</sub>: 0,44 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; =0.51-2.02 (m, 18H, Menthyl), 4.04-4.11 (m, 2H, CH<sub>2</sub>-O), 4.14 (d, <em>J = </em>4.21 Hz, 2H, CH<sub>2</sub>-O), 4.60 (dt, <em>J = </em>10.82, 10.71, 3.93 Hz, 1H, CH-O), 5.82 (t, <em>J = </em>7.44, 7.44 Hz, 1H, C<u>H</u>=CH), 5.89-6.00 (m, 1H, CH<sub>ar</sub>), 6.49-6.77 (m, 1H, CH<sub>ar</sub>), 6.80-7.31 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; =16.6 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.5 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.1 (CH<sub>2</sub>), 47.3 (CH), 51.3 (CH), 64.5 (O-CH<sub>2</sub>-O), 76.6 (CH-O), 96.6 (C<u>H</u>=CH-N), 108.3 (<u>C</u>
               <sub>ar,thiophen</sub>-CH), 118.9 (C<sub>q,ar</sub>), 124.7 (CH<sub>ar</sub>), 125.0 (CH<sub>ar</sub>), 125.7 (CH<sub>ar</sub>), 126.6 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 127.1 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 129.7 (C<sub>q,ar</sub>), 132.2 (C<sub>q,ar</sub>), 141.0 (C<sub>q,ar</sub>-O), 152.4 (C<sub>q,ar</sub>-O), 153.1 (CO)</p>
            <p>
               <citenumber id="N15012" start="192"/>
               <strong>EA:</strong> C<sub>25</sub>H<sub>29</sub>NO<sub>4</sub>S</p>
            <p>
               <table frame="all" id="N15024" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="5">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <colspec colname="5" colnum="5"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 68,85</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 6,84</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,10</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>S: 7,07</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 68,25</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 6,86</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,09</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>S: 6,93</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl 1-(2-methyl-1H-indol-3-yl)isochinolin-2(1H)-carboxylat 172g</strong>
            </p>
            <p>
               <citenumber id="N150B2" start="193"/>
               <strong>7</strong>5%, gelb-oranger Schaum </p>
            <p>R<sub>f</sub>: 0,42 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; =0.51-2.12 (m, 18H, Menthyl) 2.47 (s, 3H, C<sub>q,ar</sub>-CH<sub>3</sub>), 4.67-4.39 (m, 1H, CH-O), 5.88 (d, <em>J = </em>7.96 Hz, 1H, C<u>H</u>=CH-N), 6.63 (s, 1H, CH-C<sub>q,ar</sub>), 6.93 (qd, <em>J = </em>22.27, 7.39, 7.39, 7.17 Hz, 7H, CH<sub>ar</sub>), 7.10 (d, <em>J = </em>8.30 Hz, 1H, N-C<u>H</u>=CH), 7.57 (s, 1H, CH<sub>ar</sub>), 7.75 (s, 1H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N150F1" start="194"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; =12.4 (CH<sub>3</sub>), 16.3 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 47.3 (CH), 51.9 (CH), 76.0 (CH-O), 106.5 (<u>C</u>
               <sub>ar,Indol</sub>-CH), 110.0 (<u>C</u>H=CH-N), 119.4 (CH<sub>ar</sub>), 120.9 (CH<sub>ar</sub>), 124.5 (CH<sub>ar</sub>), 126.6 (C<sub>q,ar</sub>), 126.9 (CH<sub>ar</sub>), 127.1 (CH<sub>ar</sub>), 127.2 (CH<sub>ar</sub>), 132.7 (CH<sub>ar</sub>), 132.8 (C<sub>q,ar</sub>), 135.0 (C<sub>q,ar</sub>), 151.8 (CO)</p>
            <p>
               <strong>EA:</strong> C<sub>29</sub>H<sub>34</sub>N<sub>2</sub>O<sub>2</sub>
            </p>
            <p>
               <table frame="all" id="N15151" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 78,70</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,74</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,33</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 78,33</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,99</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,27</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N151C3" start="195"/>
               <strong>(1R)-Menthyl-1-(3-methyl-1H-indol-2-yl)isochinoline-2(1H)-carboxylat 172h </strong>
            </p>
            <p>77%, brauner Feststoff</p>
            <p>R<sub>f</sub>: 0,68 (DCM)</p>
            <p>
               <citenumber id="N151D5" start="196"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.49-2.18 (m, 18H, Menthyl), 2.23 (s, 3H, C<sub>q,ar</sub>-CH<sub>3</sub>), 4.63 (dq, <em>J = </em>11.13, 10.95, 10.95, 4.29 Hz, 1H, CH-O), 5.85 (d, <em>J = </em>7.54 Hz, 1H C<u>H</u>=CH-N), 6.80 (s, 1H, CH-C<sub>q,ar</sub>), 6.90-7.15 (m, 8H, CH<sub>ar</sub>), 7.20 (d, <em>J = </em>7.76 Hz, 1H, CH<sub>ar</sub>), 7.40 (dd, <em>J = </em>7.20, 4.25 Hz, 1H, CH<sub>ar</sub>), 7.48 (d, <em>J = </em>7.58 Hz, 1H, CH=C<u>H</u>-N), 8.09 (s, 1H, NH)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 9.7 (CH<sub>3</sub>), 16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.3 (CH), 31.4 (CH), 34.6 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 47.4 (CH), 51.4 (CH), 77.3 (CH), 107.6 (CH<sub>ar</sub>), 110.7 (<u>C</u>H=CH-N), 111.6 (C<sub>q,Indol</sub>-CH<sub>3</sub>), 118.8 (CH<sub>ar</sub>), 119.1 (CH<sub>ar</sub>), 121.6(CH<sub>ar</sub>), 121.9 (CH<sub>ar</sub>), 122.3(CH<sub>ar</sub>), 125.0(CH<sub>ar</sub>), 127.7, 128.2(CH<sub>ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 153.2 (CO),</p>
            <p>
               <table frame="all" id="N15259" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.87. HRMS (EI) <em>m/z</em>: C<sub>29</sub>H<sub>34</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.88. ber.: 442,26203</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.89. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.90. gef.: 442,26205</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N152AE" start="197"/>
               <strong>(1R)-Menthyl-1-(5-(diphenylamino)thiophen-2-yl)isochinolin-2(1H)-carboxylat 172i</strong>
            </p>
            <p>83%, gelb-grüner Schaum</p>
            <p>R<sub>f</sub>: 0,57 (DCM)</p>
            <p>
               <citenumber id="N152C0" start="198"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.56-2.08 (m, 18H, Menthyl), 4.68 (dt, <em>J = </em>10.68, 10.61, 4.24 Hz, 1H, CH-O), 5.83 (dd, <em>J = </em>24.22, 7.81 Hz, 1H, C<u>H</u>=CH-N), 6.24 (dd, <em>J = </em>22.17, 3.73 Hz, 1H, CH<sub>ar</sub>), 6.33 (d, <em>J = </em>3.66 Hz, 1H, CH<sub>ar</sub>), 6.55 (s, 1H, CH-C<sub>q,Thiophen</sub>), 6.75 (dd, <em>J = </em>7.11, 5.37 Hz, 1H, CH<sub>ar</sub>), 6.83-7.07 (m, 8H, CH<sub>ar</sub>), 7.07-7.26 (m, 7H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.6 (CH<sub>2</sub>), 26.6 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.2 (CH<sub>2</sub>), 47.4 (CH), 54.1 (CH), 76.8 (CH-O), 108.4 (<u>C</u>H=CH-N), 120.2 (CH<sub>ar</sub>), 122.4 (CH<sub>ar</sub>), 122.5 (CH<sub>ar</sub>), 124.2 (CH<sub>ar</sub>), 124.8 (CH<sub>ar</sub>), 127.1 (CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 129.0 (CH<sub>ar</sub>), 130.5 (C<sub>q,ar</sub>), 139.4 (C<sub>q,ar</sub>), 147.7 (2xC<sub>q,Ph</sub>-N), 150.9 (C<sub>q,ar-</sub>CH), 152.783,</p>
            <p>
               <strong>EA:</strong> C<sub>36</sub>H<sub>38</sub>N<sub>2</sub>O<sub>2</sub>S</p>
            <p>
               <citenumber id="N15350" start="199"/>
               <table frame="all" id="N15353" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="5">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <colspec colname="5" colnum="5"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 76,83</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 6,81</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 4,98</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>S: 5,70</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 76,70</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 6,84</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 4,89</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>S: 5,62</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(2-(piperidin-1-yl)-4-</strong>
               <strong>
                  <em>p</em>
               </strong>
               <strong>-tolylthiazol-5-yl)isochinolin-2(1H)-carboxylat 172j</strong>
            </p>
            <p>66%, gelbes hochviskoses Öl</p>
            <p>
               <citenumber id="N153ED" start="200"/>R<sub>f</sub>: 0,38 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.62-2.13 (m, 20H, Menthyl + CH<sub>2</sub>), 2.44 (s, 1H, C<u>H</u>
               <sub>3</sub>-Ph), 3.41 (s, 4H, 2x CH<sub>2</sub>), 4.63-4.88 (m, 1H, CH-O), 5.92 (d, <em>J = </em>7.81 Hz, 1H, C<u>H</u>=CH-N), 6.90 (s, 1H, C<u>H</u>-C<sub>q,Thiazol</sub>), 7.02 (dd, <em>J = </em>14.59, 7.08 Hz, 2H, CH<sub>ar</sub>), 7.16 (dd, <em>J = </em>17.26, 7.28 Hz, 3H, CH<sub>ar</sub>), 7.26-7.36 (m, 2H, CH<sub>ar</sub>), 7.64-7.94 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.1 (CH<sub>3</sub>), 21.0 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 22.2 (CH<sub>3</sub>), 23.1 (CH<sub>2</sub>), 24.1 (CH<sub>2</sub>), 25.1 (CH<sub>2</sub>), 31.6 (CH), 34.5 (CH<sub>2</sub>), 41.2 (CH<sub>2</sub>), 49.1 (CH<sub>2</sub>), 50.1 (CH), 52.8 (CH), 76.7 (CH), 100.0 (<u>C</u>H=CH-N), 125.9 (C<sub>q,ar</sub>), 126.0 (CH<sub>ar</sub>), 127.1 (CH<sub>ar</sub>), 127.6 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 129.0 (CH<sub>ar</sub>), 129.2 (CH<sub>ar</sub>), 130.8 (C<sub>q,ar</sub>), 132.8 (C<sub>q,ar</sub>), 137.3 (C<sub>q,ar</sub>),</p>
            <p>
               <citenumber id="N1547D" start="201"/>
               <table frame="all" id="N15480" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.91. HRMS (EI) <em>m/z</em>: C<sub>35</sub>H<sub>43</sub>N<sub>3</sub>O<sub>2</sub>S</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.92. ber.: 569,30760</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.93. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.94. gef.: 569,30764</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(1H-indol-3-yl)isochinolin-2(1H)-carboxylat 172k</strong>
            </p>
            <p>83%, roter Schaum</p>
            <p>
               <citenumber id="N154DE" start="202"/>R<sub>f</sub>: 0,55 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.65-2.04 (m, 18H, Menthyl), 4.50-4.81 (m, 1H, CH-O), 5.89 (d, <em>J = </em>7.68 Hz, 1H, C<u>H</u>=CH-N), 6.53-6.75 (m, 1H, CH<sub>ar</sub>), 6.80 (d, <em>J = </em>5.73 Hz, 1H, CH<sub>ar</sub>), 6.96-7.15 (m, 6H, CH<sub>ar</sub>), 7.14-7.29 (m, 2H, CH<sub>ar</sub>), 7.84 (dd, <em>J = </em>15.96, 10.60 Hz, 2H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.2 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.1 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 47.3 (CH), 51.3 (CH), 76.3 (CH-O), 108.7 (<u>C</u>
               <sub>q,Indol</sub>-CH), 109.4 (CH<sub>ar</sub>), 110.9 (<u>C</u>H=CH-N), 119.8 (CH<sub>ar</sub>), 120.4 (CH<sub>ar</sub>), 122.0 (CH<sub>ar</sub>), 124.5 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>) (CH<sub>ar</sub>), 127.6 (CH<sub>ar</sub>), 130.8 (C<sub>q,ar</sub>), 132.2 (C<sub>q,ar</sub>), 136.4 (C<sub>q,ar</sub>), 153.1 (CO)</p>
            <p>
               <citenumber id="N1555C" start="203"/>
               <strong>EA:</strong> C<sub>28</sub>H<sub>32</sub>N<sub>2</sub>O<sub>2</sub>
            </p>
            <p>
               <table frame="all" id="N15571" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 78,47</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,53</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,54</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 78,43</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,75</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,47</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(4-(diethylanilino)isochinolin-2(1H)-carboxylat 172l</strong>
            </p>
            <p>
               <citenumber id="N155E9" start="204"/>77%, gelbes hochviskoses Öl</p>
            <p>R<sub>f</sub>: 0,62 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.61-2.10 (m, 24H, Menthyl+ 2xCH<sub>3</sub>), 3.18 (q, <em>J = </em>7.01, 7.01, 6.98 Hz, 4H, 2x CH<sub>2</sub>), 4.64 (dt, <em>J = </em>10.79, 10.75, 4.27 Hz, 1H. CH-O), 5.79 (dd, <em>J = </em>14.50, 7.84 Hz, 1H, C<u>H</u>=CH-N), 6.42 (d, <em>J = </em>8.62 Hz, 2H, CH<sub>ar</sub>), 6.73 (t, <em>J = </em>7.32, 7.32 Hz, 1H, CH<sub>ar</sub>), 7.04 (ddd, <em>J = </em>26.80, 14.16, 5.75 Hz, 7H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N15628" start="205"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 12.6 (CH<sub>3</sub>), 16.4 (CH<sub>3</sub>), 20.9 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.3 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 44.2 (CH<sub>2</sub>), 47.3 (CH), 57.0 (CH), 108.2 (<u>C</u>H=CH-N), 111.10 (CH<sub>ar, Aniilin</sub>), 124.6 (CH<sub>ar</sub>), 124.9 (CH<sub>ar</sub>), 125.9 (CH<sub>ar</sub>), 126.5 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.1 (CH<sub>ar</sub>), 128.4 (CH<sub>ar</sub>), 128.7 (CH<sub>ar</sub>), 130.7 (C<sub>q,ar</sub>), 132.1 (C<sub>q,ar</sub>), 147.1 (C<sub>q,ar</sub>-NEt<sub>2</sub>), 153.1 (CO)</p>
            <p>
               <table frame="all" id="N1567F" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.95. HRMS (ESI) <em>m/z</em>: C<sub>30</sub>H<sub>41</sub>N<sub>2</sub>O<sub>2 </sub>(M+H<sub>+</sub>)</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.96. ber.: 461,3163</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.97. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.98. gef.: 461,3159</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(5-morpholino-3-phenyl-4-</strong>
               <strong>
                  <em>p</em>
               </strong>
               <strong>-tolylthiophen-2-yl)isochinolin-2(1H)-carboxylat 172m</strong>
            </p>
            <p>
               <citenumber id="N156E6" start="206"/>51%, weißer Schaum</p>
            <p>R<sub>f</sub>: 0,23 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.53-2.10 (m, 18H, Menthyl), 2.15 (s, 3H, Ph-CH<sub>3</sub>), 2.69 (m, 2H, 2x CH<sub>2</sub>-N), 3.50 (t, <em>J = </em>3.78, 3.78 Hz, 2H, 2xCH<sub>2</sub>-O), 4.47-4.78 (m, 1H, CH-O), 5.82 (d, <em>J = </em>7.87 Hz, 1H, C<u>H</u>=CH-N), 6.16 (s, 1H, N-C<u>H</u>-C<sub>q,Thiohen</sub>), 7.55-6.52 (m, 14H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N1571C" start="207"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.1 (CH<sub>3</sub>), 21.2 (CH<sub>3</sub>), 22.2 (CH<sub>3</sub>), 23.1 (CH<sub>2</sub>), 25.8 (CH), 31.6 (CH), 34.5 (CH<sub>2</sub>), 45.0 (CH<sub>2</sub>), 50.1 (CH), 52.8 (CH<sub>2</sub>-N), 53.7 (CH), 66.7 (CH<sub>2</sub>-O), 76.8 (CH), 107.8 (<u>C</u>H=CH-N), 124.7 (CH<sub>ar</sub>), 126.2 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.3 (2xCH<sub>ar</sub>), 129.9 (2xCH<sub>ar</sub>), 132.6 (C<sub>q,ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.6 (C<sub>q,ar</sub>), 150.6 (CO),</p>
            <p>
               <table frame="all" id="N15764" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.99. HRMS (ESI) <em>m/z</em>: C<sub>41</sub>H<sub>46</sub>N<sub>2</sub>O<sub>3</sub>S (M+H<sup>+</sup>)</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.100. ber.: 647,3312</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.101. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.102. gef.: 647,3302</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-4-bromo-1-(4-(diethylanilino)isochinolin-2(1H)-carboxylat 172n</strong>
            </p>
            <p>
               <citenumber id="N157C2" start="208"/>70%, farbloses Öl</p>
            <p>R<sub>f</sub>: 0,54 (DC)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.61-2.07 (m, 24H, Menthyl+ 2xCH<sub>3</sub>), 3.20 (q, <em>J = </em>7.03, 7.03, 6.96 Hz, 4H, 2xCH<sub>2</sub>), 4.55-4.77 (m, 1H, CH-O), 6.42 (t, <em>J = </em>8.45, 8.45 Hz, 3H, CH<sub>ar</sub>+N-C<u>H</u>), 6.83-7.08- (m, 3H, CH<sub>ar</sub>), 7.20 (td, <em>J = </em>14.37, 5.93, 5.93 Hz, 3H, CH<sub>ar</sub>), 7.46 (d, <em>J = </em>7.60 Hz, 1H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N157FE" start="209"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 12.5 (CH<sub>3</sub>), 16.2 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.3 (CH<sub>2</sub>), 26.3 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 44.2 (CH<sub>2</sub>), 47.2 (CH), 57.2 (CH), 77.1 (CH), 103.6 (C<sub>q</sub>-Br), 111.1 (<u>C</u>H=CH-N), 124.6 (CH<sub>ar</sub>), 125.7 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 127.8 (CH<sub>ar</sub>), 128.1 (CH<sub>ar</sub>), 128.4 (CH<sub>ar</sub>), 128.6 (CH<sub>ar</sub>), 129.9 (C<sub>q,ar</sub>), 147.2 (C<sub>q,ar</sub>-NEt<sub>2</sub>), 152.4 (CO)</p>
            <p>
               <strong>(1R)-Menthyl-4-bromo-1-(1H-indol-3-yl)isochinolin-2(1H)-carboxylat 172o</strong>
            </p>
            <p>93%, zart roter Schaum</p>
            <p>
               <citenumber id="N15855" start="210"/>R<sub>f</sub>: 0,62 (DC)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.56-2.04 (m, 18H, Menthyl), 4.73 (ddd, <em>J = </em>23.73, 11.37, 5.66 Hz, 1H, CH-O), 6.32 u. 6.50 u. 6.57 (3xs, zus. 1H, N-CH), 6.80 (d, <em>J = </em>9.92 Hz, 1H, CH<sub>ar</sub>), 7.05 (ddd, <em>J = </em>35.13, 20.83, 12.86 Hz, 4H, CH<sub>ar</sub> ), 7.15-7.36 (m, 3H, CH<sub>ar</sub>), 7.51 (d, <em>J = </em>7.58 Hz, 1H, CH<sub>ar</sub>), 7.79 (d, <em>J = </em>7.48 Hz, 1H, CH<sub>ar</sub>), 7.91 (d, <em>J = </em>12.53 Hz, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.2 (CH<sub>2</sub>), 26.1 (CH), 31.4 (CH), 34.1 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 47.1 (CH), 51.5 (CH), 76.9 (CH), 101.1 (C<sub>q</sub>-Br), 107.8 (<u>C</u>
               <sub>q,Indol</sub>-CH), 111.0 (CH<sub>ar,Indol</sub>), 120.0 (CH<sub>ar</sub>), 122.2 (CH<sub>ar</sub>), 124.6 (CH<sub>ar</sub>), 124.7 (C<sub>q,ar</sub>), 125.5 (C<sub>q,ar</sub>), 126.5 (CH<sub>ar</sub>), 127.9 (C<sub>q,ar</sub>), 128.0 (CH<sub>ar</sub>), 128.4 (CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N158D6" start="211"/>
               <strong>(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-Menthyl-1-(1H-indol-3-yl)-4-phenylisochinolin-2(1H)-carboxylat</strong>
               <strong> 172p </strong>
            </p>
            <p>82% Hellgelber Schaum</p>
            <p>R<sub>f</sub>: 0,42 (DCM)</p>
            <p>
               <citenumber id="N158F4" start="212"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR </strong>(CDCl<sub>3</sub>): &#948; =1H 0.51-2.13 (m, 18H, Menthyl), 4.86-4.55 (m, 1H, CH-O), 6.78-6.46 (m, 2H, CH<sub>ar.</sub>), 6.86 (t, <em>J = </em>9.66, 9.66 Hz, 1H, CH<sub>ar.</sub>), 7.14 (ddq, <em>J = </em>13.97, 13.97, 13.97, 8.69, 6.42 Hz, 8H, CH<sub>ar.</sub>), 7.46-7.26 (m, 5H, CH<sub>ar.</sub>), 7.99-7.82 (m, 2H, CH<sub>ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.6 (CH<sub>3</sub>), 20.2 (CH), 20.4 (CH<sub>3</sub>), 21.7 (CH<sub>3</sub>), 22.9 (CH<sub>2</sub>), 25.7 (CH), 31.0 (CH), 33.9 (CH<sub>2</sub>), 41.0 (CH<sub>2</sub>), 46.8 (CH), 51.2 (CH-N), 76.1 (CH-O), 110.6 (CH<sub>ar</sub>), 117.0 (C<sub>q,ar</sub>), 119.5 (C=<u>C</u>H-N), 120.0 (CH<sub>ar</sub>), 121.7 (CH<sub>ar</sub>), 122.8 (CH<sub>ar</sub>), 123.6 (CH<sub>ar</sub>), 124,1 (CH<sub>ar</sub>), 126,5 (C<sub>q,ar</sub>), 126.9(CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 132.6 (C<sub>q,ar</sub>), 135.9 (C<sub>q,ar</sub>), 137.3 (C<sub>q,ar</sub>), 152.77 (CO)</p>
            <p>
               <table frame="all" id="N1596C" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.103. HRMS: C<sub>34</sub>H<sub>36</sub>N<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.104. ber.: 504,27768</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.105. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.106. gef.: 504,27767</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N159BE" start="213"/>
               <strong>(1R)-Menthyl-4-(4-chlorophenyl)-1-(1H-indol-3-yl)isochinolin-2(1H)-carboxylat 172q</strong>
            </p>
            <p>quant, brauner Schaum</p>
            <p>R<sub>f</sub>: 0,63 (DC)</p>
            <p>
               <citenumber id="N159D0" start="214"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.53-2.06 (m, 18H), 4.70 (tdd, <em>J = </em>15.47, 10.96, 5.68, 5.68 Hz, 1H, CH-O), 6.64 (s, 1H, CH-N), 6.83 (d, <em>J = </em>8.97 Hz, 1H, CH<sub>ar.</sub>), 6.93-7.12 (m, 3H, CH<sub>ar.</sub>), 7.19 (dd, <em>J = </em>10.21, 7.10 Hz, 4H, CH<sub>ar.</sub>), 7.37-7.24 (m, 3H, CH<sub>ar.</sub>), 7.38-7.64 (m, 1H, CH<sub>ar.</sub>), 7.66-8.10 (m, 2H, CH<sub>ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.3 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.3 (CH), 31.5 (CH), 34.2 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 47.2 (CH), 51.6 (CH), 76.7(CH-O), 111.0 (CH<sub>ar,Indol</sub>), 119.9 (CH<sub>ar</sub>), 120.3 (CH<sub>ar</sub>), 122.2 (CH<sub>ar</sub>), 123.3 (CH<sub>ar</sub>), 123.7 (CH<sub>ar</sub>), 124.4 (CH<sub>ar</sub>), 125.8, 127.1 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 128.7 (CH<sub>ar</sub>), 130.4 (CH<sub>ar</sub>), 133.0 (C<sub>q,ar</sub>), 136.1 (C<sub>q,ar</sub>), 153.1(CO)</p>
            <p>
               <table frame="all" id="N15A45" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.107. HRMS (EI) <em>m/z</em>: C<sub>34</sub>H<sub>35</sub>ClN<sub>2</sub>O<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.108. ber.: 538,2387</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.109. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.110. gef.: 538,2385</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N15A9A" start="215"/>
               <strong>(1R)-Menthyl-4-(4-fluorophenyl)-1-(1H-indol-3-yl)isochinolin-2(1H)-carboxylat 172r</strong>
            </p>
            <p>quant, weißer Schaum</p>
            <p>R<sub>f</sub>: 0,61 (DCM)</p>
            <p>
               <citenumber id="N15AAC" start="216"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.61-2.02 (m, 18H, Menthyl), 4.56-4.85 (m, 1H, CH-O), 6.49 u. 6.62 u. 6.69 (3xs, zus. 1H, CH-N), 6.80 (ddd, <em>J = </em>9.67, 8.00, 6.08 Hz, 1H, CH<sub>ar.</sub>), 6.93-7.10 (m, 5H, CH<sub>ar.</sub>), 7.10-7.25 (m, 4H, CH<sub>ar.</sub>), 7.25-7.44 (m, 2H, CH<sub>ar.</sub>), 7.89 (dd, <em>J = </em>26.14, 9.23 Hz, 2H, CH<sub>ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; =16.2 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.4 (CH<sub>2</sub>), 26.3 (CH), 31.5 (CH), 34.2 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 47.2 (CH), 51.5 (CH), 76.6 (CH-O), 111.0 (CH<sub>ar,Indol</sub>), 115.5 (d, <em>J = </em>23.10 Hz, F-C<sub>q</sub>-<u>C</u>H<sub>ar</sub>), 119.9 (CH<sub>ar</sub>), 120.3 (CH<sub>ar</sub>), 122.1 (CH<sub>ar</sub>), 123.2 (CH<sub>ar</sub>), 123.7 (CH<sub>ar</sub>), 124.4 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 130.7 (CH<sub>ar</sub>), 133.5 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 162.1 (d, <em>J = </em>246.00 Hz, F-C<sub>q</sub>)</p>
            <p>
               <strong>AAV 8: Reaktionen von </strong>
               <strong>
                  <em>N</em>
               </strong>
               <strong>-Acylisochinoliniumsalzen mit metallorganischen Verbindu</strong>
               <strong>n</strong>
               <strong>gen</strong>
            </p>
            <p>
               <citenumber id="N15B3C" start="217"/>Zu einer Lösung von 2,00 mmol (-)-(<em>R</em>)-Menthylchloroformiat in 50 ml trockenem THF werden bei -40°C 20 mol% wasserfreies AlCl<sub>3</sub> zugesetzt. Zu dieser Lösung wurde nach 5 Minuten langsam unter Feuchtigkeitsausschluß eine Lösung von 2,00 mmol Isochinolin in 5 ml trockenem THF zugegeben. Nachdem die Lösung langsam weiß-gelblich trüb geworden ist (ca. 45-60 min), wurde sie auf -78°C abgekühlt. Anschließend wurden 2,00 mmol des entsprechenden metallorganischen Reagenzes über 45 Minuten zugegeben. Die Reaktionsmischung wurde über Nacht gerührt und dabei auf RT erwärmt. Anschließend wurde die Reaktionsmischung mit 30 ml gesättigter Ammoniumchloridlösung behandelt. Die Phasen wurden getrennt, die wässrige Phase wurde mit Dichlormethan (3x40 ml) extrahiert. Die vereinigten organischen Phasen wurden über MgSO<sub>4</sub> getrocknet und das Lösungsmittel im Vakuum entfernt. Nach der Reinigung mittels SC (CH<sub>2</sub>Cl<sub>2</sub>) wurden die <em>Mannich</em>-Produkte<strong> 181 </strong>erhalten.</p>
            <p>
               <strong>(1R)-Menthyl-1-phenylisochinolin-2(1H)-carboxylat 181a</strong>
            </p>
            <p>82% Hellgelbes klares Öl</p>
            <p>
               <citenumber id="N15B60" start="218"/>R<sub>f</sub> = 0,73 (DCM).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.70-2.20 (m, 18H, Menthyl); 4.65-4.80 (m, 1H, CH-O); 5.87 (m, 1H, N-CH=C<u>H</u>); 6.28 + 6.30 + 6.55 (s, zus. 1 H, ArCHN); 6.80-7.40 (m, 10H, CH<sub>ar</sub>).</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.5 (CH), 31.4 (CH), 34.2 (CH<sub>2</sub>), 41.4 (CH<sub>2</sub>), 47.4 (CH), 57.7 (<u>C</u>H-Ph), 76.9 (CH-O), 108.4 (N-CH=<u>C</u>H), 124.8 (CH<sub>ar</sub>), 125.0 (CH<sub>ar</sub>), 125.1 (CH<sub>ar</sub>), 125.8 (CH<sub>ar</sub>), 126.0 (CH<sub>ar</sub>), 126.5 (CH<sub>ar</sub>), 126.9 (CH<sub>ar</sub>), 127.1 (CH<sub>ar</sub>), 127.3 (CH<sub>ar</sub>), 127.5 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 128.3 (CH<sub>ar</sub>), 130.5 (C<sub>q,ar</sub>), 131.4 (C<sub>q,ar</sub>), 141.9 (C<sub>q,ar</sub>), 146.8 (C<sub>q,ar</sub>), 153.1 (CO)</p>
            <p>
               <citenumber id="N15BD5" start="219"/>
               <table frame="all" id="N15BD8" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.111. HRMS (EI) <em>m/z</em>: C<sub>26</sub>H<sub>31</sub>NO<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.112. ber.: 389,23548</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.113. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.114. gef.: 389,23554</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>1-(3-Methoxyphenyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 181b</strong>
            </p>
            <p>60% Hellgelbes klares Öl</p>
            <p>
               <citenumber id="N15C33" start="220"/> R<sub>f</sub> = 0,74 (DCM).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.5-2.2 (m, 18H, Menthyl), 3.75 (s, 3H, OCH<sub>3</sub>), 4.65-4.85 (m, 1H, CH-O), 5.90 (m, 1H, N-CH=C<u>H</u>), 6.27 + 6.31 + 6.56 (1 H, Ar-CHN), 6.70-7.30 (m, 9H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.9 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.6 (CH<sub>2</sub>), 26.7 (CH), 31.5 (CH), 34.3 (CH<sub>2</sub>), 41.5 (CH<sub>2</sub>), 47.5 (CH), 55.1 (OCH<sub>3</sub>), 57.7 (ArCH-N), 76.9 (CHO), 108.6 (<u>C</u>H=CH-N), 112.8 (<u>C</u>COCH<sub>3</sub>), 119.3 (CH<sub>ar</sub>), 124.9 (CH<sub>ar</sub>), 126.9 (CH<sub>ar</sub>), 127.2 (CH<sub>ar</sub>), 127.4 (CH<sub>ar</sub>), 127.8 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 153.2 (C=O), 159.6 (<u>C</u>OCH<sub>3</sub>)</p>
            <p>
               <citenumber id="N15C9C" start="221"/>
               <strong>(1R)-Menthyl-1-(4-bromophenyl)-isochinolin-2(1H)-carboxylat 181c</strong>
            </p>
            <p>62% gelbes hochviskoses Öl</p>
            <p>R<sub>f</sub> : 0,66 (DCM)</p>
            <p>
               <citenumber id="N15CAE" start="222"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.42-2.06 (m, 18H, Menthyl), 4.64 (dt, <em>J = </em>10.83, 10.81, 4.25 Hz, 1H), 5.79 (dd, <em>J = </em>13.73, 8.66 Hz, 1H, N-CH=C<u>H</u>), 6.16 u. 6.20 u. 6.43 (3xd, <em>J </em>=5.50, 6.79, 15.87 Hz, 1H, Ph-CH-N), 6.78 (t, <em>J = </em>8.09, 8.09 Hz, 1H, CH<sub>ar</sub>), 6.92-7.23 (m, 7H, CH<sub>ar</sub>), 7.22-7.38 (m, 2H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.4 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 21.9 (CH<sub>3</sub>), 23.5 (CH<sub>2</sub>), 26.5 (CH), 31.4 (CH), 34.1 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 47.3 (CH), 57.1 (CH), 76.8 (CH-O), 108.0 (<u>C</u>H=CH-N), 121.5 (C<sub>q,ar</sub>-Br), 124.9 (CH<sub>ar</sub>), 125.8, 127.2 (CH<sub>ar</sub>), 127.8 (CH<sub>ar</sub>), 128.1 (CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 131.5 (C<sub>q,ar</sub>), 140.9 (C<sub>q,ar</sub>), 153.0 (CO)</p>
            <p>
               <table frame="all" id="N15D17" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.115. HRMS (EI) <em>m/z</em>: C<sub>26</sub>H<sub>30</sub>BrNO<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.116. ber.: 467,14599</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.117. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.118. gef.: 467,14598</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N15D69" start="223"/>
               <strong>1-Benzyl-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 181d</strong>
            </p>
            <p>87% farbloses Öl, </p>
            <p>R<sub>f</sub> = 0,82 (DCM).</p>
            <p>
               <citenumber id="N15D7B" start="224"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.6-2.2 (m, 18 H, Menthyl); 2.70-3.10 (m, 2 H, ArCH<sub>2</sub>); 4.55-4.75 (m, 1H, CH-O), 5.27 (t, <em>J = </em>6.99, 6.99 Hz, 0,4H) u. 5.46 (t, <em>J = </em>7.11, 7.11 Hz, 0,6H)(zus 1H, CH<sub>2</sub>-C<u>H</u>-N), 5.73 (t, <em>J = </em>7.41, 7.41 Hz, 0,6H), 5.85 (t, <em>J = </em>8.11, 8.11 Hz, 0,4H)(zus. 1H, CH<sub>ar</sub>), 6.54-6.66 (m, 1H, CH<sub>ar</sub>), 6.69-6.82 (m, 1H, CH<sub>ar</sub>), 6.83-7.03 (m, 4H, CH<sub>ar</sub>), 7.04-7.33 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.7 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.3 (CH), 31.4 (CH), 34.3 (CH<sub>2</sub>), 41.3 (CH<sub>2</sub>), 47.3 (CH), 57.0 (Ar-CH-N), 76.3 (CH-O), 108.1 (<u>C</u>H-CH-N), 124.4 (CH<sub>ar</sub>), 126.3 (CH<sub>ar</sub>), 126.4 (CH<sub>ar</sub>), 127.9 (CH<sub>ar</sub>), 128.0 (CH<sub>ar</sub>), 129.8 (CH<sub>ar</sub>), 130.3 (C<sub>q,ar</sub>), 131.8 (C<sub>q,ar</sub>), 137.1 (C<sub>q,ar</sub>), 153.1 (C=O)</p>
            <p>
               <table frame="all" id="N15DF0" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.119. HRMS (EI) <em>m/z</em>: C<sub>27</sub>H<sub>33</sub>NO<sub>2</sub>
                              </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.120. ber.: 403,25113</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.121. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.122. gef.: 403,25116</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N15E42" start="225"/>
               <strong>(1R)-Menthyl-1-(3-methoxybenzyl)-isochinolin-2(1H)-carboxylat 181e</strong>
            </p>
            <p>52%, farbloses Öl</p>
            <p>R<sub>f</sub> = 0,73 (DCM)</p>
            <p>
               <citenumber id="N15E54" start="226"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.70-2.20 (m, 18H, Menthyl), 3.72 (t, <em>J = </em>6.26, 6.26 Hz, 2H, CH<sub>2</sub>), 3,79 (s, 3H, OCH<sub>3</sub>), 4.51-4.73 (m,1H, O-CH), 5.36 (dd, <em>J = </em>12.32, 5.85 Hz, 0,4H) u. 5.56 (dd, <em>J = </em>11.22, 6.86 Hz, 0,6H)(zus 1H, CH<sub>2</sub>-C<u>H</u>-N), 5.81 (dd, <em>J = </em>11.39, 7.80 Hz, 0,6H) u. 5.93 (dd, <em>J = </em>13.27, 7.80 Hz, 0,4H)(zus. 1H, CH<sub>ar</sub>), 6.57-6.68 (m, 1H, CH<sub>ar</sub>), 6.68-6.83- (m, 4H, CH<sub>ar</sub>), 6.83-6.98 (m, 1H, CH<sub>ar</sub>), 6.98-7.33 (m, 4H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.7 (CH<sub>3</sub>), 21.5 (CH<sub>3</sub>), 23.6 (CH<sub>2</sub>), 26.0 (CH), 31.4 (CH), 34.3 (CH<sub>2</sub>), 37.8 (CH<sub>2</sub>), 41.2 (CH<sub>2</sub>), 47.2 (CH), 55.1 (OCH<sub>3</sub>), 56.8 (CH), 76.3 (CH-O), 108.0 (<u>C</u>H-CH-N), 112.2 (<u>C</u>H<sub>ar</sub>-C<sub>q,ar</sub>-OCH<sub>3</sub>), 115.1 (<u>C</u>H<sub>ar</sub>-C<sub>q,ar</sub>-OCH<sub>3</sub>), 122.3 (CH<sub>ar</sub>), 124.4 (CH<sub>ar</sub>), 126.4 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 127.6 (CH<sub>ar</sub>), 129.2 (CH<sub>ar</sub>), 129.3 (CH<sub>ar</sub>), 129.6 (CH<sub>ar</sub>), 130.4 (C<sub>q,ar</sub>), 131.8 (C<sub>q,ar</sub>), 137.0 (C<sub>q,ar</sub>), 138.7 (C<sub>q,ar</sub>), 143.4 (C<sub>q,ar</sub>), 152.4 (CO), 159.6 (C<sub>q,ar</sub>-OCH<sub>3</sub>)</p>
            <p>
               <strong>1-(4-Methoxyphenyl)-2-((-)-menthyloxycarbonyl)-1,2-dihydroisochinolin 181f</strong>
            </p>
            <p>
               <citenumber id="N15F05" start="227"/>18% Hellgelbes klares Öl,</p>
            <p>R<sub>f</sub> = 0,73 (DCM).</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.5-2.2 (m, 19 H statt 18 H, Menthyl); 3.74 (m, 3 H, OCH<sub>3</sub>); 4.65-4.80 (m, 1 H, CH-O); 5.87 (m, 1H, N-CH=C<u>H</u>); 6.24 + 6.27 + 6.51 (1 H, ArCHN); 6.77 (d, 2H, J = 8.50, CH<sub>ar</sub>); 7.00-7.30 (m, 6H, CH<sub>ar</sub>).</p>
            <p>
               <citenumber id="N15F2C" start="228"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 21.0 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.7 (CH), 31.6 (CH), 34.4 (CH<sub>2</sub>), 41.5 (CH<sub>2</sub>), 47.5 (CH), 55.3 (OCH<sub>3</sub>) 76.5 (CH-O), 106.1 (<u>C</u>H-CH-N), 113.7 (<u>C</u>COCH<sub>3</sub>), 113.8 (<u>C</u>COCH<sub>3</sub>), Aromaten schwach und schlecht aufgelöst; 159.1 (<u>C</u>OCH<sub>3</sub>)</p>
            <p>
               <strong>AAV 9 Hydrierung der Enamindoppelbindung</strong>
            </p>
            <p>1,5 mmol der Reissert-(analogen-)Verbindung wurden in 50 ml Methanol gelöst. Bei Löslichkeitsproblemen wurde eine gerade zur Lösung notwendige Menge Dichlormethan zugesetzt. Die Lösung wurde mit einer Spatelspitze (50-100 mg) Palladium auf Aktivkohle (20% Pd/C, 52% H<sub>2</sub>O) versetzt und der Kolben mit einem Ballon mit Wasserstoff verbunden. Nach 4stündigem Rühren bei RT wurde die Lösung filtriert und das Filtrat auf etwa 1/10 eingeengt. Dieser Rückstand wurde mit 20 ml DCM aufgenommen und über Magnesiumsulfat getrocknet. Nach Filtrieren und Entfernen des Lösungsmittels am Rotationsverdampfer erhält man die Tetrahydroisochinoline. Bei Bedarf wurden die Produkte säulenchromatographisch gereinigt.</p>
            <p>
               <citenumber id="N15F74" start="229"/>
               <strong>(1R)-Menthyl-1-(1H-indol-3-yl)-3,4-dihydroisochinolin-2(1H)-carboxylat 188a</strong>
            </p>
            <p>84%, rötlicher Schaum</p>
            <p>R<sub>f</sub> = 0,34 (DCM)</p>
            <p>
               <citenumber id="N15F86" start="230"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.54 - 2.16(m, 18H, Menthyl), 2.68 (ddd, <em>J = </em>11.59, 6.06, 3.03 Hz, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 2.82-3.03 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 3.11 (dd, <em>J = </em>12.01, 8.82 Hz, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 3.82-4.07 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 4.39-4.87 (m, 1H, CH-O), 6.53 (m, 1H, C<sub>q,Indol</sub>-C<u>H</u>-N), 6.72 (s, 1H, CH<sub>ar</sub>), 7.00-7.21 (m, 6H, CH<sub>ar</sub>), 7.27 (d, <em>J = </em>8.15 Hz, 1H, CH<sub>ar</sub>), 7.73 (s, 1H, CH<sub>ar</sub>), 7.96 (s, 1H, NH)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 20.7 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.3 (CH), 28.7 (CH<sub>2</sub>), 31.4 (CH), 34.4 (CH<sub>2</sub>), 37.3 (CH<sub>2</sub>), 41.6 (CH<sub>2</sub>), 47.6 (CH), 51.3 (CH), 75.0 (CH-O), 110.9 (CH<sub>ar,Indol</sub>), 119.7 (CH<sub>ar</sub>), 122.3 (CH<sub>ar</sub>), 125.7 (CH<sub>ar</sub>), 126.6 (CH<sub>ar</sub>), 128.4 (C<sub>q,ar</sub>), 129.0 (CH<sub>ar</sub>), 130.6 (C<sub>q,ar</sub>), 134.8 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 155.0 (CO)</p>
            <p>
               <strong>EA:</strong> C<sub>28</sub>H<sub>34</sub>N<sub>2</sub>O<sub>2</sub>
            </p>
            <p>
               <citenumber id="N16031" start="231"/>
               <table frame="all" id="N16034" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 78,10</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,74</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,51</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 77,59</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,15</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,66</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(4-(</strong>
               <strong>
                  <em>N,N</em>
               </strong>
               <strong>-diethylanilino)-3,4-dihydroisochinolin-2(1H)-carboxylat 188b</strong>
            </p>
            <p>83%, gelbes Öl</p>
            <p>
               <citenumber id="N160B8" start="232"/>R<sub>f</sub> = 0,4 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.71-2.14 (M, 24H, Menthyl + 2x CH<sub>3</sub>) 2.67-2.84 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 2.85-3.08 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 3.31 (q, <em>J = </em>7.01, 7.01, 6.95 Hz, 4H, 2xC<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-CH<sub>3</sub>), 3.22 (ddd, <em>J = </em>13.22, 11.24, 4.35 Hz, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 3.83-4.25 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 4.65 (dt, <em>J = </em>10.67, 10.60, 3.92 Hz, 1H, CH-O), 6.31 (2xs zus. 1H, CH-C<sub>q,ar</sub>), 6.56 (d, <em>J = </em>8.18 Hz, 2H, CH<sub>ar</sub>), 7.04 (dd, <em>J = </em>19.78, 7.23 Hz, 3H, CH<sub>ar</sub>), 7.09-7.29 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 12.6 (2x CH<sub>3</sub>), 16.5 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.6 (CH<sub>2</sub>), 26.4 (CH), 28.5 (<u>C</u>H<sub>2</sub>-CH<sub>2</sub>-N), 31.4 (CH), 34.4 (CH<sub>2</sub>), 37.6 (CH<sub>2</sub>), 41.7 (CH<sub>2</sub>-<u>C</u>H<sub>2</sub>-N), 44.3 (2xCH<sub>2</sub>), 47.5 (CH), 57.0 (<u>C</u>H-C<sub>q,ar</sub>), 75.0 (CH-O), 111.0 (CH<sub>ar</sub>), 125.8 (CH<sub>ar</sub>), 125.9 (CH<sub>ar</sub>), 126.6 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 129.5 (CH<sub>ar</sub>), 135.0 (C<sub>q,ar</sub>), 136.2<link id="OLE_LINK5"/>
               <link id="OLE_LINK6"/> (C<sub>q,ar</sub>), 146.9 (C<sub>q,ar</sub>-N), 155.1 (CO)</p>
            <p>
               <citenumber id="N16184" start="233"/>
               <strong>(1R)-Menthyl-1-phenyl-3,4-dihydroisochinolin-2(1H)-carboxylat 188c</strong>
            </p>
            <p>54%, farbloses Öl</p>
            <p>R<sub>f</sub> = 0,67 (DCM)</p>
            <p>
               <citenumber id="N16196" start="234"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.65-2.11 (m, 18H, Menthyl), 2.56-2.77 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 2.76-3.00 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 3.03-3.31 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 3.78-4.23 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 4.58 (dt, <em>J = </em>10.84, 10.83, 4.29 Hz, 1H, CH-O), 6.16 u. 6.40 (2xs, zus. 1H, CH-C<sub>q,Ph</sub>), 6.97 (d, <em>J = </em>6.85 Hz, 1H, CH<sub>ar</sub>), 7.03-7.28 (m, 8H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.6 (CH<sub>3</sub>), 20.9 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.5 (CH), 28.5 (CH<sub>2</sub>), 31.4 (CH), 34.4 (CH<sub>2</sub>), 38.2 (CH<sub>2</sub>), 41.7 (CH<sub>2</sub>), 47.6 (CH), 57.5 (CH-C<sub>q,Ph</sub>), 75.3 (CH-O), 126.1 (CH<sub>ar</sub>), 126.4 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 127.3 (CH<sub>ar</sub>), 128.2 (CH<sub>ar</sub>), 128.9 (CH<sub>ar</sub>), 135.1 (C<sub>q,ar</sub>), 135.5 (C<sub>q,ar</sub>), 142.9 (C<sub>q,ar</sub>), 155.3 (CO)</p>
            <p>
               <table frame="all" id="N16226" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.123. HRMS (EI) C<sub>26</sub>H<sub>33</sub>NO<sub>2</sub> <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.124. ber.: 391,25113</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.125. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.126. gef.: 391,25118</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N16278" start="235"/>
               <strong>(1R)-Menthyl-1-(3-methoxyphenyl)-3,4-dihydroisochinolin-2(1H)-carboxylat 188d</strong>
            </p>
            <p>quant, farbloses zähflüssiges Öl</p>
            <p>R<sub>f</sub> = 0,62 (DCM)</p>
            <p>
               <citenumber id="N1628A" start="236"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.64-2.18 (m, 18H), 2.65-2.89 (m, 1H), 2.88-3.14 (m, 1H), 3.30 (ddd, <em>J = </em>13.17, 10.26, 4.61 Hz, 1H), 3.78 (s, 3H), 3.93-4.27 (m, 1H), 4.71 (dt, <em>J = </em>10.84, 10.84, 4.33 Hz, 1H), 6.27 u..6.48 (2xs, zus. 1H), 6.80 (td, <em>J = </em>9.18, 5.96, 5.96 Hz, 3H), 7.05-7.33 (m, 5H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.6 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.0 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.5 (CH), 28.4 (CH<sub>2</sub>), 31.4 (CH), 34.4 (CH<sub>2</sub>), 38.2 (CH<sub>2</sub>), 41.6 (CH<sub>2</sub>), 47.5 (CH), 55.1 (O-CH<sub>3</sub>), 57.6 (CH), 75.3 (CH-O), 112.7 (CH<sub>ar</sub>), 114.3 (CH<sub>ar</sub>), 120.6 (CH<sub>ar</sub>), 126.0 (CH<sub>ar</sub>), 127.0 (CH<sub>ar</sub>), 128.6 (CH<sub>ar</sub>), 128.8 (CH<sub>ar</sub>), 129.0 (CH<sub>ar</sub>), 129.1 (C<sub>q,ar</sub>), 135.4 (C<sub>q,ar</sub>), 144.4 (C<sub>q,ar</sub>), 155.3 (CO), 159.5 (C<sub>q,ar</sub>)</p>
            <p>
               <strong>EA:</strong> C<sub>27</sub>H<sub>35</sub>NO<sub>3</sub>
            </p>
            <p>
               <citenumber id="N16302" start="237"/>
               <table frame="all" id="N16305" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 76,92</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,37</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,32</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 76,50</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 8,56</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 3,30</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(1R)-Menthyl-1-(4-methoxyphenyl)-3,4-dihydroisochinolin-2(1H)-carboxylat 188e</strong>
            </p>
            <p>99%, farbloses Öl</p>
            <p>
               <citenumber id="N16380" start="238"/>R<sub>f</sub> = 0,62 (DCM)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 0.56-2.12 (m, 18H, Menthyl), 2.68-2.92 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 2.91-3.12 (m, 1H, C<u>H</u>
               <sub>2</sub>-CH<sub>2</sub>-N), 3.17-3.42 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 3.80 (s, 3H, OCH<sub>3</sub>), 3.95-4.28 (m, 1H, CH<sub>2</sub>-C<u>H</u>
               <u>
                  <sub>2</sub>
               </u>-N), 4.69 (ddd, <em>J = </em>22.76, 11.38, 4.49 Hz, 1H, CH-O), 6.27 u, 6.48 (2xs, zus. 1H, CH-C<sub>q,ar</sub>), 6.84 (dd, <em>J = </em>8.58, 1.51 Hz, 2H, CH<sub>ar</sub>), 7.07 (d, <em>J = </em>8.61 Hz, 1H, CH<sub>ar</sub>), 7.34-7.11 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR </strong>(CDCl<sub>3</sub>): &#948; = 16.5 (CH<sub>3</sub>), 20.8 (CH<sub>3</sub>), 22.1 (CH<sub>3</sub>), 23.7 (CH<sub>2</sub>), 26.4 (CH), 28.5 (CH<sub>2</sub>), 31.4 (CH), 34.4 (CH<sub>2</sub>), 38.0 (CH<sub>2</sub>), 41.6 (CH<sub>2</sub>), 47.5 (CH), 55.2 (O-CH<sub>3</sub>), 56.9 (CH-C<sub>q,ar</sub>), 75.4 (CH-O), 113.4 (2x <u>C</u>H<sub>ar</sub>-C<sub>q,ar</sub>-OCH<sub>3</sub>), 126.0 (CH<sub>ar</sub>), 126.8 (CH<sub>ar</sub>), 128.9 (CH<sub>ar</sub>), 129.5 (CH<sub>ar</sub>), 129.9 (CH<sub>ar</sub>), 130.6 (CH<sub>ar</sub>), 132.7 (C<sub>q,ar</sub>), 137.2 (C<sub>q,ar</sub>), 139.3 (C<sub>q,ar</sub>), 155.2 (CO), 158.7 (<u>C</u>
               <sub>q,ar</sub>-OCH<sub>3</sub>)</p>
            <p>
               <citenumber id="N16437" start="239"/>
               <strong>2-(1</strong>
               <strong>
                  <em>R</em>
               </strong>
               <strong>)-Menthyloxycarbonyl-1,2,3,4-tetrahydroisochinolin-1-carbonsäureamid 150</strong>
            </p>
            <p>quant., farbloses zähflüssiges Öl</p>
            <p>R<sub>f</sub> = 0.34 (DCM/Aceton, 95:5)</p>
            <p>
               <citenumber id="N16452" start="240"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 0.77 &#8211; 2.08 (18 H, m, 18 x C<u>H</u>, Menthyl), 2.92 (2 H, m, C<u>H</u>
               <sub>2</sub>CH2-N), 3.83 (2 H, m, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 4.67 (1 H, m, O-C<u>H</u>, Menthyl), 5.64 (1 H, s, O=C-C<u>H</u>-N), 6.10 (2 H, s, N<u>H</u>
               <sub>2</sub>), 7.28 &#8211; 7.18 (4 H, m, 4x C<sub>ar</sub>-<u>H</u>) </p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 20.8 (<u>C</u>H<sub>3</sub>), 22.0 (2x <u>C</u>H<sub>3</sub>), 23.5 (<u>C</u>H<sub>2</sub>), 26.5 (<u>C</u>H-(CH<sub>3</sub>)<sub>2</sub>), 28.5 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 29.3 (<u>C</u>H-CH<sub>3</sub>), 34.3 (<u>C</u>H<sub>2</sub>), 40.7 (<u>C</u>H<sub>2</sub>), 41.6 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 47.3 (<u>C</u>H-<em>i</em>Pr), 53.4 (O=C-N-<u>C</u>H), 76.3 (<u>C</u>H-O-C=O), 126.6 (<u>C</u>H<sub>ar</sub>), 127.7 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.4 (<u>C</u>H<sub>ar</sub>), 135.1 (C<sub>q,ar</sub>), 135.2 (C<sub>q,ar</sub>), 173.3 (C<sub>q</sub>, <u>C</u>=O)</p>
            <p>
               <strong>1-(1H-Indol-3-yl)-2-methyl-1,2,3,4-tetrahydroisochinolin 192</strong>
            </p>
            <p>
               <citenumber id="N1650C" start="241"/>Zu einer Suspension von 650 mg Lithiumaluminiumhydrid (17.1 mmol) in 50 ml trockenem THF wurde eine Lösung von 352 mg (0.81mmol) des Carbamates <strong>188a</strong> in 5 ml trockenem THF zugetropft. Nach beendeter Zugabe wurde die erhaltenene Suspension 3 Tage bei Raumtemperatur gerührt. Anschließend wurde sie mit 20 ml gesättigter Ammoniumchloridlösung versetzt. Nach Trennen der Phasen wurde die wäßrige Phase noch 3 mal mit je 20 ml Essigester extrahiert. Die vereinigtern organischen Phasen wurden über Natriumsulfat getrocknet, das Lösungsmittel am Rotationsverdampfer entfernt und der braune Rückstand säulenchromatographisch gereinigt. Man erhielt 85 mg (0,32mmol 40%) <strong>192</strong> als hellbraunes Öl.</p>
            <p>R<sub>f</sub> = 0.11 (DCM/Aceton, 1:1)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) =1H 2.37 (s, 3H, N_CH<sub>3</sub>), 2.73 (ddd, <em>J = </em>16.60, 9.85, 4.33 Hz, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 2.90-3.11 (m, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 3.17-3.44 (m, 2H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 4.76 (s, 1H, <u>C</u>H-C<sub>q,Indol</sub>), 7.01 (ddd, <em>J = </em>31.52, 24.41, 13.76 Hz, 4H, CH<sub>ar</sub>), 7.19 (ddd, <em>J = </em>14.95, 9.93, 8.51 Hz, 3H, CH<sub>ar</sub>), 7.30 (d, <em>J = </em>8.12 Hz, 1H, CH<sub>ar</sub>), 7.51 (d, <em>J = </em>7.91 Hz, 1H, CH<sub>ar</sub>), 8.77 (s, 1H, NH)</p>
            <p>
               <citenumber id="N1656C" start="242"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) =29.2 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 44.3 (N-CH<sub>3</sub>), 51.8 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 62.8 (<u>C</u>H-C<sub>q,ar</sub>), 111.2 (CH<sub>ar,Indol</sub>), 117.3 (CH-<u>C</u>
               <sub>q,Indol</sub>), 119.4 (<u>C</u>H<sub>ar</sub>), 120.0 (<u>C</u>H<sub>ar</sub>), 121.8 (<u>C</u>H<sub>ar</sub>), 124.7 (<u>C</u>H<sub>ar</sub>), 125.7 (<u>C</u>H<sub>ar</sub>), 126.0 (<u>C</u>H<sub>ar</sub>), 127.2 (C<sub>q,ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 134.1 (C<sub>q,ar</sub>), 136.5 (C<sub>q,ar</sub>), 138.6 (C<sub>q,ar</sub>)</p>
            <p>
               <strong>1-(3-Methoxyphenyl)-2-methyl-1,2,3,4-tetrahydroisochinolin 194a</strong>
            </p>
            <p>185 mg (0,47mmol) des Carbamates <strong>188d</strong> wurden in 20 ml trockenem Toluol vorgelegt. Zu dieser Lösung wurden 3ml (10mmol, 21 Äq.) einer Natrium-bis(methoxy-ethoxy)-aluminiumhydrid-Lösung (3,5M in Toluol) zugetropft. Nach beendeter Zugabe wurde die Reaktionsmischung 4 Stunden unter Rückflußbedingungen erhitzt. Nach dem Abkühlen auf Raumtemperatur wurde sie mit 20 ml gesättigter Ammoniumchloridlösung versetzt. Nach Trennen der Phasen wurde die wäßrige Phase noch 3 mal mit je 20 ml Essigester extrahiert. Die vereinigtern organischen Phasen wurden über Natriumsulfat getrocknet, das Lösungsmittel am Rotationsverdampfer entfernt und der braune Rückstand säulenchromatographisch gereinigt. Man erhielt 53 mg (0,21mmol, 45%) 194a als braunes Öl.</p>
            <p>
               <citenumber id="N165E4" start="243"/>R<sub>f</sub> = 0.18 (DCM/Aceton, 97,5:2,5)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 2.17 (s, 3H, N-CH<sub>3</sub>), 2.71-2.85- (m, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 2.99 (td, <em>J = </em>11.72, 5.72, 5.72 Hz, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 3.25-3.51 (m, 2H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.78 (s, 3H, O-CH<sub>3</sub>), 4.87 (s, 1H, <u>C</u>H-C<sub>q,ar</sub>), 6.80 (dd, <em>J = </em>7.96, 2.34 Hz, 1H, CH<sub>ar</sub>), 6.90 (d, <em>J = </em>7.57 Hz, 1H, CH<sub>ar</sub>), 6.99 (s, 1H, CH<sub>ar</sub>), 7.11-7.29 (m, 4H, CH<sub>ar</sub>), 7.30-7.40 (m, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 29.3 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 44.3 (N-CH<sub>3</sub>), 52.2 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 55.2 (O-CH<sub>3</sub>), 65.1 (<u>C</u>H-C<sub>q,ar</sub>), 112.8 (<u>C</u>H<sub>ar</sub>), 115.2 (<u>C</u>H<sub>ar</sub>), 122.2 (<u>C</u>H<sub>ar</sub>), 126.0 (<u>C</u>H<sub>ar</sub>), 127.5 (<u>C</u>H<sub>ar</sub>), 128.3 (<u>C</u>H<sub>ar</sub>), 129.2 (<u>C</u>H<sub>ar</sub>), 134.1 (C<sub>q,ar</sub>), 138.2 (C<sub>q,ar</sub>), 141.0 (C<sub>q,ar</sub>), 145.2 (C<sub>q,ar</sub>), 159.6 (C<sub>q,ar</sub>)</p>
            <p>
               <citenumber id="N166A1" start="244"/>
               <table frame="all" id="N166A4" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.127. HRMS (EI) C<sub>17</sub>H<sub>19</sub>NO<em> m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.128. ber.: 253,14666</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.129. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.130. gef.: 253,14675</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>4-</strong>
               <strong>
                  <em>N,N</em>
               </strong>
               <strong>-Diethylanilino-(1,2,3,4-tetrahydroisochinolin194b</strong>
            </p>
            <p>100 mg des Carabamates <strong>188b</strong> wurden in 30 ml einer 6M Salzsäurelösung gelöst und 6 Stunden unter Rückflußbedingungen erhitzt. Nach dem Abkühlen auf Raumtemperatur wurde die Reaktionsmischung mit einer 10M Natriumhydoxid bis auf etwa pH 9 gebracht. Die wäßrige Lösung wurde nun 3 mal mit je 30 ml Essigester extrahiert, die Extrakte wurden vereinigt und über Natriumsulfat getrocknet. Nach säulenchromatographischer Reinigung erhielt man das Amin <strong>194b</strong> als braunen Feststoff (36 mg, 0,13 mmol, 61%).</p>
            <p>
               <citenumber id="N1670B" start="245"/>R<sub>f</sub> = 0.09 (DCM/Aceton, 1:1)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 1.07 (t, <em>J = </em>7.07, 7.07 Hz, 6H, 2x CH<sub>3</sub>), 2.53-2.85 (m, 2H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 2.87-3.08 (m, 2H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.25 (q, <em>J = </em>7.05, 7.05, 7.01 Hz, 4H, 2x CH<sub>2</sub>), 4.94 (s, 1H, <u>C</u>H-C<sub>q,ar</sub>), 6.54 (d, <em>J = </em>8.76 Hz, 2H, CH<sub>ar</sub>), 6.76 (d, <em>J = </em>7.54 Hz, 1H, CH<sub>ar</sub>), 6.90-7.08 (m, 5H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 12.6 (2xCH<sub>3</sub>), 29.6 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 41.9 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 44.3 (2xCH<sub>2</sub>), 61.2 (CH-C<sub>q,ar</sub>), 111.4 (<u>C</u>H<sub>ar</sub>), 125.5 (<u>C</u>H<sub>ar</sub>), 126.0 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.8 (<u>C</u>H<sub>ar</sub>), 129.9 (<u>C</u>H<sub>ar</sub>), 131.1 (C<sub>q,ar</sub>), 135.2 (C<sub>q,ar</sub>), 138.6 (C<sub>q,ar</sub>), 147.1 (C<sub>q,ar</sub>)</p>
            <p>
               <citenumber id="N167B0" start="246"/>
               <table frame="all" id="N167B3" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.131. HRMS (EI) C<sub>19</sub>H<sub>24</sub>N<sub>2</sub> <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.132. ber.: 280,19395</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.133. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.134. gef.: 280,19340</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>AAV 10: Abspaltung des Auxiliars mit Trifluoressigsäure</strong>
            </p>
            <p>In ein Druckröhrchen mit Schraubverschluß wurden 2.00 mmol des Carbamates <strong>188</strong> gegeben, Anschließend wurden 15 ml konzentrierte Trifluoressigsäure hinzugefügt, Das Röhrchen wurde fest verschlossen und in einem Aluminiumblock bei 110°C Blocktemperatur 6 Stunden erhitzt. Nach dem Abkühlen auf Raumtemperatur und vorsichtigem Öffnen wurde die Reaktionsmischung mit einer 10M Natriumhydoxid bis auf etwa pH 9 gebracht. Die wäßrige Lösung wurde nun 3 mal mit je 30 ml Essigester extrahiert, die Extrakte wurden vereinigt und über Natriumsulfat getrocknet. Nach säulenchromatographischer Reinigung erhielt man das Amin <strong>194.</strong>
            </p>
            <p>
               <citenumber id="N16814" start="247"/>
               <strong>4-</strong>
               <strong>
                  <em>N,N</em>
               </strong>
               <strong>-Diethylanilino-1,2,3,4-tetrahydroisochinolin 194b</strong>
            </p>
            <p>69%, analytisch Daten s.o.</p>
            <p>
               <strong>1-Phenyl-1,2,3,4-tetrahydroisochinolin 194c</strong>
            </p>
            <p>
               <citenumber id="N1682F" start="248"/>90%, weißer Feststoff</p>
            <p>R<sub>f</sub> = 0.14 (DCM/Aceton, 1:1)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 2.89 (td, <em>J = </em>9.09, 5.70, 5.70 Hz, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 2.96-3.17 (m, 2H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N u. CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.24 (dd, <em>J = </em>12.79, 7.57 Hz, 1H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 5.15 (s, 1H, CH-N), 6.74 (d, <em>J = </em>7.56 Hz, 1H, CH<sub>ar</sub>), 7.05 (dt, <em>J = </em>8.60, 8.26, 4.23 Hz, 1H, CH<sub>ar</sub>), 7.16 (d, <em>J = </em>3.86 Hz, 2H, CH<sub>ar</sub>), 7.21 (dd, <em>J = </em>7.61, 1.84 Hz, 2H, CH<sub>ar</sub>), 7.25-7.37 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N1688F" start="249"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 26.6 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 39.5 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 59.9 (CH-N), 126.6 (<u>C</u>H<sub>ar</sub>), 127.6 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.8 (<u>C</u>H<sub>ar</sub>), 128.9 (<u>C</u>H<sub>ar</sub>), 129.5 (<u>C</u>H<sub>ar</sub>), 132.9 (C<sub>q,ar</sub>), 133.0 (C<sub>q,ar</sub>), 138.9 (C<sub>q,ar</sub>)</p>
            <p>
               <strong>EA:</strong> C<sub>15</sub>H<sub>15</sub>N</p>
            <p>
               <table frame="all" id="N168EC" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 86,08</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,22</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,69</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 85,88</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 7,41</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 6,67</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N1695E" start="250"/>
               <strong>1-(3-Methoxyphenyl)-1,2,3,4-tetrahydroisochinolin 194d</strong>
            </p>
            <p>96%, hellbraunes Öl</p>
            <p>R<sub>f</sub> = 0.29 (DCM/Aceton, 1:1)</p>
            <p>
               <citenumber id="N16970" start="251"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 2.85 (td, <em>J = </em>8.54, 6.35, 6.35 Hz, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 3.00-3.17 (m, 2H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N u. CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.31 (td, <em>J = </em>15.66, 6.97, 6.97 Hz, 1H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.80 (s, 3H, O-CH<sub>3</sub>), 5.11 (s, 1H, C<u>H</u>-NH), 6.73-6.94 (m, 4H, CH<sub>ar</sub>), 6.98-7.13 (m, 1H, CH<sub>ar</sub>), 7.17 (d, <em>J = </em>3.84 Hz, 2H, CH<sub>ar</sub>), 7.22-7.34 (m, 1H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 29.7 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 42.2 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 55.2 (O-CH<sub>3</sub>), 62.0 (CH-NH), 112.8 (<u>C</u>H<sub>ar</sub>), 114.6 (<u>C</u>H<sub>ar</sub>), 121.4 (<u>C</u>H<sub>ar</sub>), 125.6 (<u>C</u>H<sub>ar</sub>), 126.3 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 129.0 (<u>C</u>H<sub>ar</sub>), 129.3 (<u>C</u>H<sub>ar</sub>), 135.3 (C<sub>q,ar</sub>), 138.0 (C<sub>q,ar</sub>), 146.4 (C<sub>q,ar</sub>), 159.6 (C<sub>q,ar</sub>)</p>
            <p>
               <table frame="all" id="N16A21" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.135. HRMS (EI) C<sub>16</sub>H<sub>17</sub>NO <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.136. ber.: 239,13101</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.137. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.138. gef.: 239,13102</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N16A70" start="252"/>
               <strong>1-(4-Methoxyphenyl)-1,2,3,4-tetrahydroisochinolin 194e</strong>
            </p>
            <p>59%, hellbraunes Öl</p>
            <p>R<sub>f</sub> = 0.14 (CyH/EE, 1:1)</p>
            <p>
               <citenumber id="N16A82" start="253"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 2.79-2.91 (m, 1H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N), 2.97-3.16 (m, 2H, C<u>H</u>
               <sub>2</sub>CH<sub>2</sub>-N u. CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.23-3.36 (m, 1H, CH<sub>2</sub>C<u>H</u>
               <sub>2</sub>-N), 3.81 (s, 1H, OCH<sub>3</sub>), 5.09 (s, 1H, CH-N), 6.77 (d, <em>J = </em>7.62 Hz, 1H, CH<sub>ar</sub>), 6.83-6.91 (m, 2H, CH<sub>ar</sub>), 7.06 (td, <em>J = </em>8.55, 3.99, 3.99 Hz, 1H, CH<sub>ar</sub>), 7.15 (d, <em>J = </em>3.86 Hz, 2H, CH<sub>ar</sub>), 7.17-7.24 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; (ppm) = 29.2 (<u>C</u>H<sub>2</sub>CH<sub>2</sub>-N), 42.1 (CH<sub>2</sub>
               <u>C</u>H<sub>2</sub>-N), 55.2 (O-CH<sub>3</sub>), 61.3 (CH-N), 113.7 2x(<u>C</u>H<sub>ar</sub>), 125.6 (<u>C</u>H<sub>ar</sub>), 126.2 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.9 (<u>C</u>H<sub>ar</sub>), 130.0 2x(<u>C</u>H<sub>ar</sub>), 135.3 (C<sub>q,ar</sub>), 136.8 (C<sub>q,ar</sub>), 138.3 (C<sub>q,ar</sub>), 158.9 (C<sub>q,ar</sub>)</p>
            <p>
               <table frame="all" id="N16B27" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.139. HRMS (EI) C<sub>16</sub>H<sub>17</sub>NO <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.140. ber.: 239,13101</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.141. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.142. gef.: 239,13102</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <citenumber id="N16B76" start="254"/>
               <strong>AAV 11: Darstellung der Aminosäurefluoride</strong>
            </p>
            <p>In einem 100 ml Kolben wurden unter Feuchtigkeitsausschluß 2,5 mmol der entsprechenden N-geschützten Aminosäure in 50 ml CH<sub>2</sub>Cl<sub>2</sub> suspendiert. Nach Zugabe von 2,5mmol trockenem Pyridin wurde eine klare Lösung erhalten, die mit Hilfe einer Eis / Kochsalzmischung auf ca. -10°C gebracht wurde. Zu der Reaktionsmischung wurde 3,125mmol Cyanurfluorid über ½ h zugetropft. Es wurde weitere 2-3 h bei ca. 0°C gerührt, wobei die Cyanursäure als weißer Niederschlag ausfiel. Anschließend wurde die Reaktionsmischung in 100 ml Eiswasser gegeben. Die Phasen wurden so schnell wie möglich getrennt (die weiter ausfallende Cyanursäure führt sonst zur Bildung einer dicken Suspension und die Phasentrennung wird kaum möglich). Die wässrige Phase wurde dreimal mit je 50 ml CH<sub>2</sub>Cl<sub>2 </sub>extrahiert. Die vereinigten organischen Phasen wurden mit MgSO<sub>4</sub> getrocknet. Nach dem Entfernen des Lösungsmittels am Rotationsverdampfer wurden farblose Öle erhalten, die nach kurzer Zeit zu weissen Feststoffen kristallisierten.</p>
            <p>Aufgrund des aggressiven Verhaltens der hergestellten Fluoride, das eine Beschädigung der Polarimeter-Küvette verursacht, wurde auf Messungen der Drehwerte verzichtet.</p>
            <p>
               <citenumber id="N16B94" start="255"/>
               <strong>(2</strong>
               <strong>
                  <em>S</em>
               </strong>
               <strong>)-2(N-Benzyloxycarbonyl)propansäurefluorid 195a</strong>
            </p>
            <p>Gemäss <strong>AAV 10</strong> wurden 1.115 g (5.00 mmol) N-Z-(<em>L</em>)-alanin, 0.51 ml (0.054 g, 5.00 mmol) Pyridin und 810 mg, 6.00 mmol) Cyanurfluorid umgesetzt. Es wurden 1.145 g (5 mmol, 96 quant.) des Fluorids <strong>195a</strong> erhalten.</p>
            <p>Farbloses Öl </p>
            <p>
               <citenumber id="N16BB5" start="256"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.43 (d, 3H, <em>J</em> = 7.5, CH-C<u>H</u>
               <sub>3</sub>), 4.45 (m, 1H, C<u>H</u>-CH<sub>3</sub>), 5.05 (s, 2H, C<u>H</u>
               <sub>2</sub>), 5.27 (d, 1H, <em>J</em> = 7.1, NH), 7.21-7.30 (m, 5H, CH<sub> ar.</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 16.7 (CH-<u>C</u>H<sub>3</sub>), 48.5 (d, <em>J = </em>62.75 Hz, <u>C</u>H-CH<sub>3</sub>), 67.1 (<u>C</u>H<sub>2</sub>), 128.2 (<u>C</u>H<sub>ar.</sub>), 128.4 (<u>C</u>H<sub>ar.</sub>), 128.6 (<u>C</u>H<sub>ar.</sub>), 135.6 (C<sub>ar.</sub>), 155.6 (O-CO-N), 163.1 (d, <em>J = </em>370.60 Hz, C(O)F)</p>
            <p>
               <strong>
                  <sup>19</sup>
               </strong>
               <strong>F-NMR</strong> (CDCl<sub>3</sub>): &#948; = 27.4 (COF)</p>
            <p>
               <citenumber id="N16C2D" start="257"/>
               <strong>(2</strong>
               <strong>
                  <em>S</em>
               </strong>
               <strong>)-2(N-Benzyloxycarbonyl)-3-phenylpropansäurefluorid 195b</strong>
            </p>
            <p>Gemäss <strong>AAV 10</strong> wurden 1.495 g (5.00 mmol) N-Z-(<em>L</em>)-Phenylalanin, 0.49 ml (0.046 g, 5.00 mmol) Pyridin und 810mg(6.00 mmol) Cyanurfluorid umgesetzt. Es wurden 1.484 g (4.93 mmol, 98 %) des Fluorids <strong>195b</strong> als farbloses Öl erhalten.</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 3.09 (m, 2H, CH-C<u>H</u>
               <sub>2</sub>), 4.74 (m, 1H, C<u>H</u>-CH<sub>2</sub>), 5.02 (s, 2H, OC<u>H</u>
               <sub>2</sub>-Ph), 7.05-7.26 (m, 11H, 10 CH<sub> ar.</sub> und NH).</p>
            <p>
               <citenumber id="N16C6F" start="258"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 36.8 (CH-<u>C</u>H<sub>2</sub>), 53.8 (d, <em>J = </em>60.05 Hz<u> C</u>H-CH<sub>2</sub>), 67.5 (O<u>C</u>H<sub>2</sub>-Ph), 127.8 (CH<sub>ar.</sub>), 128.2 (CH<sub>ar.</sub>), 128.6 (2CH<sub>ar.</sub>), 129.1 (2CH<sub>ar.</sub>), 129.2 (2CH<sub>ar.</sub>), 129.4 (2CH<sub>ar.</sub>) 134.2 (OCH<sub>2</sub>- <u>C</u>
               <sub>ar.</sub>), 135.6 (C<sub>ar.</sub>), 155.6 (O-CO), 161.9 (d, <em>J = </em>369.88 Hz, COF).</p>
            <p>
               <strong>
                  <sup>19</sup>
               </strong>
               <strong>F-NMR</strong> (CDCl<sub>3</sub>): &#948; = 30.5 (COF)</p>
            <p>
               <strong>EA:</strong> C<sub>17</sub>H<sub>16</sub>FNO<sub>3</sub>
            </p>
            <p>
               <citenumber id="N16CD5" start="259"/>
               <table frame="all" id="N16CD8" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="4">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <colspec colname="3" colnum="3"/>
                     <colspec colname="4" colnum="4"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>ber.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 67,76</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 5,35</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 4,65</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>gef.:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>C: 67,64</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>H: 5,68</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>N: 4,92</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>AAV 12: Reaktionen von </strong>
               <strong>
                  <em>N-</em>
               </strong>
               <strong>
                  <em>-</em>
               </strong>
               <strong>Aminoacyliminiumsalzen mit elektronenreichen Arom</strong>
               <strong>a</strong>
               <strong>ten</strong>
            </p>
            <p>Zu einer Lösung von 1,00mmol Aminosäurefluorid in 50ml trockenem Dichlormethan werden bei -20°C 20 mol% wasserfreies AlCl<sub>3</sub> zugesetzt. Zu dieser Lösung wurde nach 30 Minuten langsam unter Feuchtigkeitsausschluß eine Lösung von 1,00mmol Isochinolin in 5ml trockenem Dichlormethan zugegeben. Die entstandene Mischung wird noch drei Stunden gerührt und dabei bis auf ca 0°C aufgetaut. Nachdem die Lösung langsam orange-rot geworden ist, wurde sie auf -78°C abgekühlt. Anschließend wurden 1,00mmol des entsprechenden elektronenreichen Aromaten in 20ml Dichlormethan über 45 Minuten zugegeben. Die Reaktionsmischung wurde über Nacht gerührt und dabei auf RT erwärmt. Anschließend wurde die Reaktionsmischung mit 20ml gesättigter Natriumhydrogencarbonatlösung versetzt. Nach üblicher Reinigung wurden die Mannich-Produkte erhalten.</p>
            <p>
               <citenumber id="N16D6B" start="260"/>
               <strong>Benzyl-(S)-1-((R)-1-(4-(</strong>
               <strong>
                  <em>N,N-</em>
               </strong>
               <strong>diethylanilino)isochinolin-2(1H)-yl)-1-oxopropan-2-yl-carbamat 196a </strong>
            </p>
            <p>21%, hellgelbes Öl, DV 82:18</p>
            <p>R<sub>f</sub> = 0.21 (CyH/EE, 8:2)</p>
            <p>
               <citenumber id="N16D86" start="261"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.20 (t, <em>J = </em>7.07, 7.07 Hz, 6H, 2x CH<sub>3</sub>), 1.39 (d, <em>J = </em>6.84 Hz, 3H, CH-C<u>H</u>
               <sub>3</sub>), 3.39 (q, <em>J = </em>7.06, 7.05, 7.05 Hz, 4H, 2x CH<sub>2</sub>), 4.33 (dq, <em>J = </em>6.65, 6.64, 6.64, 1.86 Hz, 1H, C<u>H</u>-CH<sub>3</sub>), 5.14 (s, 2H, CH<sub>2</sub>-Ph), 6.34 (d, <em>J = </em>7.37 Hz, 1H, C<u>H</u>=CH-N), 6.53 (d, <em>J = </em>8.23 Hz, 1H, CH<sub>ar</sub>), 6.79-6.67 (m, 2H, CH<sub>ar</sub>), 6.92 (d, <em>J = </em>7.34 Hz, 1H, CH=C<u>H</u>-N), 7.50-7.13 (m, 11H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 12.5 (2x CH<sub>3</sub>), 19.3 (CH<sub>3</sub>), 44.2 (2x CH<sub>2</sub>), 47.9 (<u>C</u>H-CH<sub>3</sub>), 55.7 (CH), 66.7 (O-CH<sub>2</sub>), 112.4 (<u>C</u>H=CH-N), 116.5 (2xCH<sub>ar.</sub>), 121.0 (<u>C</u>H<sub>ar</sub>), 123.4 (<u>C</u>H<sub>ar</sub>), 125.4 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.4 (<u>C</u>H<sub>ar</sub>), 128.6 (<u>C</u>H<sub>ar</sub>), 128.7 (<u>C</u>H<sub>ar</sub>), 129.3 (<u>C</u>H<sub>ar</sub>), 129.9 (C<sub>q,ar</sub>), 130.7 (C<sub>q,ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.5 (C<sub>q,ar</sub>), 155.4 (CO<sub>2</sub>-Bn), 168.6 (CON)</p>
            <p>
               <strong>Benzyl-(S)-1-((R)-1-(4-(</strong>
               <strong>
                  <em>N,N</em>
               </strong>
               <strong>-diethylanilino)-isochinolin-2(1H)-yl)-1-oxo-3-phenylpropan-2-ylcarbamat 196b </strong>
            </p>
            <p>
               <citenumber id="N16E46" start="262"/>21%, hellgelbes Öl,  DV 72:28</p>
            <p>R<sub>f</sub> = 0.21 (CyH/EE, 8:2)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.12 (t, <em>J = </em>7.22, 7.22 Hz, 6H, 2x CH<sub>3</sub>), 3.11-2.95 (m, 2H, CH<sub>2</sub>), 3.28 (dd, <em>J = </em>13.49, 6.57 Hz, 4H, 2x CH<sub>2</sub>), 5.03 (dd, <em>J = </em>14.24, 6.34 Hz, 1H, C<u>H</u>-CH<sub>2</sub>-Ph), 5.12 (d, <em>J = </em>2.92 Hz, 2H, O-CH<sub>2</sub>-Ph), 5.82 (d, <em>J = </em>8.06 Hz, 1H, CH<sub>ar</sub>), 6.00 (d, <em>J = </em>7.80 Hz, 1H, C<u>H</u>=CH-N), 6.50 (d, <em>J = </em>6.91 Hz, 2H, CH<sub>ar</sub>), 6.65 (s, 1H, CH<sub>ar</sub>), 6.91-7.41 (m, 16H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N16E97" start="263"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 12.5 (2x CH<sub>3</sub>), 39.2 (CH-<u>C</u>H<sub>2</sub>-Ph), 44.3 (2x CH<sub>2</sub>), 53.0 (<u>C</u>H-CH<sub>2</sub>-Ph), 56.0 (CH-Ph), 66.8 (CH<sub>2</sub>-O), 110.9 (<u>C</u>H=CH-N), 112.9 (2xCH<sub>ar.</sub>), 123.3 (<u>C</u>H<sub>ar</sub>), 125.1 (<u>C</u>H<sub>ar</sub>), 126.8 (<u>C</u>H<sub>ar</sub>), 127.2 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 129.3 (<u>C</u>H<sub>ar</sub>), 129.6, 130.0 (<u>C</u>H<sub>ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 147.2 (C<sub>q,ar</sub>), 155.5 (CO<sub>2</sub>-Bn), 166.8 (CON)</p>
            <p>
               <strong>Benzyl-(S)-1-((R)-1-(4-(</strong>
               <strong>
                  <em>N,N</em>
               </strong>
               <strong>-dimethylanilino)-isochinolin-2(1H)-yl)-1-oxo-3-phenylpropan-2-ylcarbamat 196c </strong>
            </p>
            <p>44%, hellgelbes Öl, DV 78:22</p>
            <p>
               <citenumber id="N16F18" start="264"/>R<sub>f</sub> = 0.19 (CHCl<sub>3</sub>)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 2.89 (s, 3H, CH<sub>3</sub>), 2.96 (s, 2H, CH<sub>2</sub>), 2.99 (s, 3H, CH<sub>3</sub>), 4.93-5.08 (m, 1H, C<u>H</u>-CH<sub>2</sub>), 5.13 (d, <em>J = </em>3.40 Hz, 2H, CH<sub>2</sub>-O), 5.85 (d, <em>J = </em>8.17 Hz, 1H, CH<sub>ar</sub>), 6.01 (d, <em>J = </em>7.82 Hz, 1H, C<u>H</u>=CH-N), 6.59 (d, <em>J = </em>8.83 Hz, 1H, CH<sub>ar</sub>), 6.65 (dd, <em>J = </em>7.07, 5.19 Hz, 2H, CH<sub>ar</sub>), 6.76-7.42 (m, 16H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 39.2 (CH-<u>C</u>H<sub>2</sub>-Ph), 40.5 (2x CH<sub>3</sub>), 53.0 (CH-Ph), 56.0 (<u>C</u>H-CH<sub>2</sub>), 66.8 (CH<sub>2</sub>-O), 112.1 (<u>C</u>H=CH-N), 112.9 (2x<u>C</u>H<sub>ar</sub>), 115.8 (<u>C</u>H<sub>ar</sub>), 123.3 (<u>C</u>H<sub>ar</sub>), 125.0 (<u>C</u>H<sub>ar</sub>), 125.2 (<u>C</u>H<sub>ar</sub>), 126.9 (<u>C</u>H<sub>ar</sub>), 127.2 (<u>C</u>H<sub>ar</sub>), 127.6 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.1 (<u>C</u>H<sub>ar</sub>), 128.3 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.9 (<u>C</u>H<sub>ar</sub>), 129.1 (<u>C</u>H<sub>ar</sub>), 129.3 (<u>C</u>H<sub>ar</sub>), 129.5 (<u>C</u>H<sub>ar</sub>), 129.9 (<u>C</u>H<sub>ar</sub>), 133.0 (C<sub>q,ar</sub>), 135.1 (C<sub>q,ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.4 (C<sub>q,ar</sub>), 149.8 (C<sub>q,ar</sub>), 155.5 (CO<sub>2</sub>-Bn), 169.6 (CON)</p>
            <p>
               <citenumber id="N16FFF" start="265"/>
               <table frame="all" id="N17002" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.143. HRMS (ESI) C<sub>34</sub>H<sub>34</sub>N<sub>3</sub>O<sub>3</sub> <link id="OLE_LINK10"/>
                                 <link id="OLE_LINK11"/>(M+H<sup>+</sup>) <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.144. ber.: 532,2595</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.145. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.146. gef.: 532,2603</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>Benzyl-(S)-1-((S)-1-(1H-pyrrol-2-yl)isochinolin-2(1H)-yl)-1-oxopropan-2-ylcarbamat 196e</strong>
            </p>
            <p>Hauptdiasteromer, 32%, hellgelbes Öl, </p>
            <p>
               <citenumber id="N17069" start="266"/>R<sub>f</sub> = 0.21 (DCM +1% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.40 (d, <em>J = </em>6.97 Hz, 3H, CH<sub>3</sub>), 4.82 ( p, <em>J = </em>6.91, 6.91, 6.89, 6.89 Hz, 1H, C<u>H</u>-CH<sub>3</sub>), 5.16 (s, 2H, CH<sub>2</sub>-O), 5.45 (s, 1H, CH<sub>ar</sub>), 5.89 (d, <em>J = </em>6.55 Hz, 1H, CH<sub>ar</sub>), 5.99 (dd, <em>J = </em>5.76, 2.89 Hz, 1H, CH<sub>ar</sub>), 6.09 (d, <em>J = </em>7.74 Hz, 1H, C<u>H</u>=CH-N), 6.61 (d, <em>J = </em>7.69 Hz, 1H, CH=C<u>H</u>-N), 6.72 (d, <em>J = </em>1.47 Hz, 1H, CH<sub>ar</sub>), 6.79 (s, 1H, CH<sub>ar</sub>), 7.14-7.50 (m, 8H, CH<sub>ar</sub>), 8.82 (s, 1H, NH)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 19.1 (CH<sub>3</sub>), 47.9 (<u>C</u>H-C<sub>q,Pyrrol</sub>), 51.3 (<u>C</u>H-CH<sub>3</sub>), 67.0 (CH<sub>2</sub>-O), 107.5 (<u>C</u>H<sub>ar,Pyrrol</sub>), 108.5 (<u>C</u>H=CH-N), 112.0 (<u>C</u>H<sub>ar,Pyrrol</sub>), 116.0 (<u>C</u>H<sub>ar,Pyrrol</sub>), 118.3 (<u>C</u>H<sub>ar</sub>), 122.4 (<u>C</u>H<sub>ar</sub>), 125.1 (<u>C</u>H<sub>ar</sub>), 125.3 (<u>C</u>H<sub>ar</sub>), 127.6 (<u>C</u>H<sub>ar</sub>), 127.7 (<u>C</u>H<sub>ar</sub>), 128.1 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.7 (<u>C</u>H<sub>ar</sub>), 130.0 (C<sub>q,ar</sub>), 130.5 (C<sub>q,ar</sub>), 131.6 (C<sub>q,ar</sub>), 155.5 (CO<sub>2</sub>-Bn), 172.5 (CON)</p>
            <p>
               <citenumber id="N17138" start="267"/>
               <strong>Benzyl-(S)-1-((S)-1-(1H-pyrrol-2-yl)isochinolin-2(1H)-yl)-1-oxopropan-2-ylcarbamat 196e </strong>
            </p>
            <p>Minderdiasteromer, 14%, hellgelbes Öl</p>
            <p>R<sub>f</sub> = 0.13 (DCM +1% Aceton)</p>
            <p>
               <citenumber id="N1714A" start="268"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.39 (d, <em>J = </em>6.81 Hz, 1H, CH<sub>3</sub>), 4.74-4.93- (m, 1H, C<u>H</u>-CH<sub>3</sub>), 5.13 (s, 2H, CH<sub>2</sub>-O), 5.51 (s, 1H, CH<sub>ar</sub>), 5.90-6.08 (m, 3H, CH<sub>ar </sub>u. C<u>H</u>=CH-N), 6.53 (d, <em>J = </em>7.77 Hz, 1H, CH=C<u>H</u>-N), 6.71 (dd, <em>J = </em>4.06, 2.49 Hz, 1H, CH<sub>ar</sub>), 6.87 (s, 1H, CH<sub>ar</sub>), 7.09-7.47 (m, 8H, CH<sub>ar</sub>), 8.81 (s, 1H)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 18.5 (CH<sub>3</sub>), 47.2 (<u>C</u>H-C<sub>q,Pyrrol</sub>), 50.7 (<u>C</u>H-CH<sub>3</sub>), 66.9 (CH<sub>2</sub>-O), 107.6 (<u>C</u>H<sub>ar,Pyrrol</sub>), 108.3 (<u>C</u>H=CH-N), 111.8 (<u>C</u>H<sub>ar,Pyrrol</sub>), 118.2 (<u>C</u>H<sub>ar,Pyrrol</sub>), 122.1 (<u>C</u>H<sub>ar</sub>), 125.1 (<u>C</u>H<sub>ar</sub>), 125.5 (<u>C</u>H<sub>ar</sub>),127.6 (<u>C</u>H<sub>ar</sub>), 128.1 (<u>C</u>H<sub>ar</sub>), 128.3 (<u>C</u>H<sub>ar</sub>), 128.6 (<u>C</u>H<sub>ar</sub>), 129.8 (C<sub>q,ar</sub>), 130.3 (C<sub>q,ar</sub>), 131.9 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 155.5 (CO<sub>2</sub>-Bn), 172.0 (CON)</p>
            <p>
               <strong>Benzyl-(S)-1-((S)-1-(1H-indol-3-yl)isochinolin-2(1H)-yl)-1-oxo-3-phenylpropan-2-ylcarbamat 196f</strong>
            </p>
            <p>
               <citenumber id="N171FB" start="269"/>72%, hellgelbes Öl, DV 2:1</p>
            <p>R<sub>f</sub> = 0.23 (DCM +1,5% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 2.84-3.25 (m, 2H, CH-C<u>H</u>
               <sub>2</sub>-Ph), 4.96-5.22 (m, 3H, C<u>H</u>-CH<sub>2</sub>-Ph, CH<sub>2</sub>-O), 6.09 (d, <em>J = </em>7.55 Hz, 1H, C<u>H</u>=CH-N), 6.55 (s, 1H, N-CH), 6.82 (dd, <em>J = </em>18.64, 7.14 Hz, 1H, CH<sub>ar</sub>), 6.96-7.32 (m, 1H, CH<sub>ar</sub>), 7.32-7.51 (m, 12H, CH<sub>ar</sub>), 7.94 (t, <em>J = </em>7.91, 7.91 Hz, 5H, CH<sub>ar</sub>), 8.46 (s, 1H, NH)</p>
            <p>
               <citenumber id="N1723D" start="270"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 39.1 (CH-<u>C</u>H<sub>2</sub>-Ph), 50.2 (CH-N), 53.2 (<u>C</u>H-CH<sub>2</sub>-Ph), 66.9 (CH<sub>2</sub>-O), 111.2 (<u>C</u>H=CH-N), 113.7 (<u>C</u>H<sub>ar</sub>), 115.8,119.9 (<u>C</u>H<sub>ar</sub>), 120.2 (<u>C</u>H<sub>ar</sub>), 122.1 (<u>C</u>H<sub>ar</sub>), 123.3 (<u>C</u>H<sub>ar</sub>), 125.2 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.3 (<u>C</u>H<sub>ar</sub>), 128.5v, 129.4 (<u>C</u>H<sub>ar</sub>), 130.0 (C<sub>q,ar</sub>), 133.4 (C<sub>q,ar</sub>), 135.4 (C<sub>q,ar</sub>), 136.2 (C<sub>q,ar</sub>), 136.4 (C<sub>q,ar</sub>), 155.6 (CO<sub>2</sub>-Bn), 169.4 (CON)</p>
            <p>
               <table frame="all" id="N172A9" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.147. HRMS (ESI) C<sub>34</sub>H<sub>30</sub>N<sub>3</sub>O<sub>3</sub> (M+H<sup>+</sup>) <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.148. ber.: 528,2282</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.149. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.150. gef.: 528,2292</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>Benzyl-(S)-1-((S)-1-(1H-indol-3-yl)isochinolin-2(1H)-yl)-1-oxopropan-2-ylcarbamat 196g</strong>
            </p>
            <p>
               <citenumber id="N17307" start="271"/>56%, hellgelbes Öl, DV 2:1</p>
            <p>R<sub>f</sub> = 0.23 (DCM +1,5% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.40 (d, <em>J = </em>6.82 Hz, 3H, CH<sub>3</sub>), 4.76 ( p, <em>J = </em>6.84, 6.84, 6.83, 6.83 Hz, 1H, CH-CH<sub>3</sub>), 5.11 (d, <em>J = </em>2.76 Hz, 2H, CH<sub>2</sub>-O), 6.12 (d, <em>J = </em>7.52 Hz, 1H, C<u>H</u>=CH-N), 6.16 (d, <em>J = </em>7.61 Hz, 1H, CH<sub>ar</sub>), 6.57 (d, <em>J = </em>7.48 Hz, 1H, CH=C<u>H</u>-N), 6.62 (d, <em>J = </em>2.30 Hz, 1H, CH<sub>ar</sub>), 7.33-7.06 (m, 9H, CH<sub>ar</sub>), 7.49-7.34 (m, 5H, CH<sub>ar</sub>), 7.91 (d, <em>J = </em>7.32 Hz, 1H, CH<sub>ar</sub>), 8.48 (s, 1H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N1735B" start="272"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 19.2 (CH<sub>3</sub>), 48.0 (CH-N), 50.1 (CH-CH<sub>3</sub>), 66.8 (CH<sub>2</sub>-O), 111.2 (<u>C</u>H<sub>ar</sub>), 113.2 (<u>C</u>H=CH-N), 116.2 (<u>C</u>
               <sub>q,Indol</sub>-CH-N), 119.9 (<u>C</u>H<sub>ar</sub>), 120.2 (<u>C</u>H<sub>ar</sub>), 122.2 (<u>C</u>H<sub>ar</sub>), 123.4 (<u>C</u>H<sub>ar</sub>), 125.1 (<u>C</u>H<sub>ar</sub>), 125.5(C<sub>q,ar</sub>), 127.0 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 129.9(C<sub>q,ar</sub>), 133.6 (C<sub>q,ar</sub>), 136.2 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 155.5 (CO<sub>2</sub>-Bn), 170.8 (CON)</p>
            <p>
               <table frame="all" id="N173C7" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.151. HRMS (ESI) C<sub>28</sub>H<sub>26</sub>N<sub>3</sub>O<sub>3</sub> (M+H<sup>+</sup>) <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.152. ber.: 452,1969</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.153. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.154. gef.: 452,1979</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p>
               <strong>(2S,10bR)-Benzyl-2-methyl-3-oxo-2,3-dihydroimidazo[2,1-a]isoquinoline-1(10bH)-carboxylate 197</strong>
            </p>
            <p>
               <citenumber id="N17425" start="273"/>35-72%, hellgelbes Öl, DV 1:1 &#8211; 95:5</p>
            <p>R<sub>f</sub> = 0.22 (DCM +1% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.48 (d, <em>J = </em>6.89 Hz, 3H, CH<sub>3</sub>), 4.52 (d, <em>J = </em>6.35 Hz, 1H, C<u>H</u>-CH<sub>3</sub>), 5,32 (s, 2H, CH<sub>2</sub>-O), 6.22 (s, 1H, CH-N), 6.29 (d, <em>J = </em>7.43 Hz, 1H, C<u>H</u>=CH-N), 6.90 (d, <em>J = </em>7.40 Hz, 1H, CH=C<u>H</u>-N), 7.21-7.09 (m, 1H, CH<sub>ar</sub>), 7.34-7.25 (m, 3H, CH<sub>ar</sub>), 7.63-7.34 (m, 6H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N17467" start="274"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 19.2 (CH<sub>3</sub>), 56.1 (CH-CH<sub>3</sub>), 68.0 (CH<sub>2</sub>-O), 70.8 (CH-N), 115.9 (<u>C</u>H=CH-N), 120.9 (<u>C</u>H<sub>ar</sub>), 123.7 (<u>C</u>H<sub>ar</sub>), 125.3 (<u>C</u>H<sub>ar</sub>), 128.4 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.6 (<u>C</u>H<sub>ar</sub>), 130.3 (C<sub>q,ar</sub>), 130.8 (C<sub>q,ar</sub>), 135.6 (C<sub>q,ar</sub>), 148.7 (C<sub>q,ar</sub>), 149.4 (CO<sub>2</sub>-Bn), 168.9 (CON)</p>
            <p>
               <strong>AAV 13: Reaktionen von Isochinolin mit Aminosäurefluoriden und </strong>
               <strong>
                  <em>Grignard</em>
               </strong>
               <strong>-Reagenzien</strong>
            </p>
            <p>Zu einer Lösung von 1,00 mmol Aminosäurefluorid in 50 ml trockenem Dichlormethan werden bei -20°C 20 mol% wasserfreies AlCl<sub>3</sub> zugesetzt. Zu dieser Lösung wurde nach 30 Minuten langsam unter Feuchtigkeitsausschluß eine Lösung von 1,00 mmol Isochinolin in 5 ml trockenem Dichlormethan zugegeben. Die entstandenen Mischung wird noch drei Stunden gerührt und dabei bis auf ca 0°C aufgetaut. Nachdem die Lösung langsam orange-rot geworden ist, wurde sie auf -78°C abgekühlt. Anschließend wurden 1,00 mmol des entsprechenden Grognard-Reagenzes in 20 ml Dichlormethan über 45 Minuten zugegeben. Die Reaktionsmischung wurde über Nacht gerührt und dabei auf RT erwärmt. Anschließend wurde Die Reaktionsmischung mit 20 ml gesättigter Natriumhydrogencarbonatlösung versetzt. etzt. Nach üblicher Reinigung wurden die Mannich-Produkte erhalten.</p>
            <p>
               <citenumber id="N174CD" start="275"/>
               <strong>Benzyl-(S)-1-oxo-1-((R)-1-phenylisochinolin-2(1H)-yl)propan-2-ylcarbamat 200a</strong>
            </p>
            <p>50%, hellbraunes Öl, DV 73:27</p>
            <p>R<sub>f</sub> = 0.43 (DCM +2% Aceton)</p>
            <p>
               <citenumber id="N174DF" start="276"/>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; =1.47 (d, <em>J = </em>7.06 Hz, 3H, CH<sub>3</sub>), 5.17 (d, <em>J = </em>9.95 Hz, 2H, CH<sub>2</sub>-O), 5.64 (bs, 1H, C<u>H</u>-CH3), 6.09 (dd, <em>J = </em>17.97, 7.69 Hz, 1H, C<u>H</u>=CH-N), 6.92 (dd, <em>J = </em>11.06, 4.22 Hz, 1H, CH<sub>ar</sub>), 7.07-7.45 (m, 13H, CH<sub>ar</sub>), 7.75-7.46 (m, 2H, CH<sub>ar</sub>), 8.00 (d, <em>J = </em>7.67 Hz, 1H, CH=C<u>H</u>-N)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 19.9 (CH<sub>3</sub>), 47.9 (<u>C</u>H-CH<sub>3</sub>), 56.6 (CH-N), 67.0 (CH<sub>2</sub>-O), 112.7 (C<u>H</u>=CH-N), 120.1 (<u>C</u>H<sub>ar</sub>), 125.5 (<u>C</u>H<sub>ar</sub>), 125.8 (<u>C</u>H<sub>ar</sub>), 126.9 (<u>C</u>H<sub>ar</sub>), 127.3 (<u>C</u>H<sub>ar</sub>), 128.1 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.9 (<u>C</u>H<sub>ar</sub>), 129.5 (<u>C</u>H<sub>ar</sub>), 129.8 (C<sub>q,ar</sub>), 132.5 (C<sub>q,ar</sub>), 133.9 (C<sub>q,ar</sub>), 135.3 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 140.6 (C<sub>q,ar</sub>), 145.0 (C<sub>q,ar</sub>), 155.9 (CO<sub>2</sub>-Bn), 171.4 (CON)</p>
            <p>
               <strong>Benzyl-(S)-1-((R)-1-(3-methoxyphenyl)isochinolin-2(1H)-yl)-1-oxopropan-2-ylcarbamat 200b</strong>
            </p>
            <p>
               <citenumber id="N1758A" start="277"/>43%, hellbraunes Öl, DV 2:1</p>
            <p>R<sub>f</sub> = 0.53 (DCM +2% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.16 (d, <em>J = </em>6.57 Hz, 3H, CH<sub>3</sub>), 3.73 (s, 3H, O-CH<sub>3</sub>), 4.98-4.76 (m, 1H, CH<sub>3</sub>-C<u>H</u>), 5.06 (d, <em>J = </em>4.72 Hz, 2H, O-CH<sub>2</sub>), 5.53 (d, <em>J = </em>8.77 Hz, 1H, C<u>H</u>=CH-N), 6.82-6.71 (m, 2H, CH<sub>ar</sub>), 6.92 (s, 1H, CH<sub>ar</sub>), 7.03 (d, <em>J = </em>7.87 Hz, 1H, CH<sub>ar</sub>), 7.08-7.26- (m, 7H, CH<sub>ar</sub>), 7.28-7.45 (m, 3H, CH<sub>ar</sub>)</p>
            <p>
               <citenumber id="N175D2" start="278"/>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; = 18.6 (CH<sub>3</sub>), 47.0 (<u>C</u>H-CH<sub>3</sub>), 52.7 (O-CH<sub>3</sub>), 55.5 (CH-N), 67.2 (CH<sub>2</sub>-O), 111.5 (<u>C</u>H<sub>ar</sub>-C<sub>q</sub>-OCH<sub>3</sub>), 112.1 (<u>C</u>H<sub>ar</sub>-C<sub>q</sub>-OCH<sub>3</sub>), 112.6 (C<u>H</u>=CH-N), 119.4 (<u>C</u>H<sub>ar</sub>), 120.7 (<u>C</u>H<sub>ar</sub>), 121.3 (<u>C</u>H<sub>ar</sub>), 125.5 (<u>C</u>H<sub>ar</sub>), 127.7 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.6 (<u>C</u>H<sub>ar</sub>), 129.4 (<u>C</u>H<sub>ar</sub>), 129.9 (<u>C</u>H<sub>ar</sub>), 130.0 (<u>C</u>H<sub>ar</sub>), 132.0 (C<sub>q,ar</sub>), 135.1 (C<sub>q,ar</sub>), 136.3 (C<sub>q,ar</sub>), 146.4 (C<sub>q,ar</sub>), 156.4 (CO<sub>2</sub>-Bn), 159.6 (C<sub>q,ar</sub>), 171.1 (CON)</p>
            <p>
               <strong>Benzyl-(S)-1-((R)-1-benzylisochinolin-2(1H)-yl)-1-oxopropan-2-ylcarbamat 200c</strong>
            </p>
            <p>70%, hellgelbes Öl, DV 2:1</p>
            <p>
               <citenumber id="N1766B" start="279"/>R<sub>f</sub> = 0.51 (DCM +2% Aceton)</p>
            <p>
               <strong>
                  <sup>1</sup>
               </strong>
               <strong>H-NMR</strong> (CDCl<sub>3</sub>): &#948; = 1.47 (d, <em>J = </em>7.21 Hz, 3H, C<u>H</u>
               <sub>3</sub>-CH)), 2.97 (s, 2H, CH<sub>2</sub>-Ph), 5.16 (d, <em>J = </em>0.74 Hz, 2H, O-CH<sub>2</sub>), 5.41-5.52 (m, 1H, CH<sub>ar</sub>), 6.05 (dd, <em>J = </em>7.68, 1.82 Hz, 1H, C<u>H</u>=CH-N), 6.62 (dd, <em>J = </em>7.61, 3.29 Hz, 1H, CH=C<u>H</u>-N), 6.82 (dd, <em>J = </em>8.63, 2.45 Hz, 1H, CH<sub>ar</sub>), 7.15-7.45 (m, 13H, CH<sub>ar</sub>)</p>
            <p>
               <strong>
                  <sup>13</sup>
               </strong>
               <strong>C-NMR</strong> (CDCl<sub>3</sub>): &#948; =18.6 (CH<sub>3</sub>), 37.9 (CH-<u>C</u>H<sub>2</sub>-Ph), 47.4 (<u>C</u>H-CH<sub>3</sub>), 55.9 (CH-N), 67.1 (CH<sub>2</sub>-O), 111.8(C<u>H</u>=CH-N), 112.4 (<u>C</u>H<sub>ar</sub>), 123.1 (<u>C</u>H<sub>ar</sub>), 124.9 (<u>C</u>H<sub>ar</sub>), 125.0 (<u>C</u>H<sub>ar</sub>), 126.5 (<u>C</u>H<sub>ar</sub>), 126.6 (<u>C</u>H<sub>ar</sub>), 126.9 (<u>C</u>H<sub>ar</sub>), 127.8 (<u>C</u>H<sub>ar</sub>), 128.0 (<u>C</u>H<sub>ar</sub>), 128.2 (<u>C</u>H<sub>ar</sub>), 128.4 (<u>C</u>H<sub>ar</sub>), 128.5 (<u>C</u>H<sub>ar</sub>), 128.6 (<u>C</u>H<sub>ar</sub>), 129.9 (<u>C</u>H<sub>ar</sub>), 132.3 (C<sub>q,ar</sub>), 135.3 (C<sub>q,ar</sub>), 136.9 (C<sub>q,ar</sub>), 141.8 (C<sub>q,ar</sub>), 155.6 (CO<sub>2</sub>-Bn), 170.6 (CON)</p>
            <p>
               <citenumber id="N17734" start="280"/>
               <table frame="all" id="N17737" orient="port" tocentry="1">
                  <tgroup align="left" char="" charoff="50" cols="2">
                     <colspec colname="1" colnum="1"/>
                     <colspec colname="2" colnum="2"/>
                     <tbody valign="top">
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.155. HRMS (ESI) C<sub>27</sub>H<sub>26</sub>N<sub>2</sub>O<sub>3</sub> (M+H<sup>+</sup>) <em>m/z</em>:</p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.156. ber.: 427,2016</p>
                           </entry>
                        </row>
                        <row>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.157. </p>
                           </entry>
                           <entry morerows="0" rotate="0" valign="top">
                              <p>1.1.158. gef.: 427,2025</p>
                           </entry>
                        </row>
                     </tbody>
                  </tgroup>
               </table>
            </p>
            <p/>
            <p/>
            <p/>
            <p/>
         </section>
      </chapter><img src="http://vg01.met.vgwort.de/na/b7d4da7d3250989336a4c7c68b94ea" width="1" height="1" alt=""/></cms:content></cms:document></cms:container>