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1,6-二取代(E,Z,E)-1,3,5-己三烯上的多米诺6π-电环化/狄尔斯-阿尔德反应:通往高度取代的三环和四环体系的通用方法。

Domino 6pi-electrocyclization/Diels-Alder reactions on 1,6-disubstituted (E,Z,E)-1,3,5-hexatrienes: versatile access to highly substituted tri- and tetracyclic systems.

作者信息

von Essen Regina, Frank Daniel, Sünnemann Hans Wolf, Vidović Denis, Magull Jörg, de Meijere Armin

机构信息

Institut für Organische und Biomolekulare Chemie der Georg-August-Universität Göttingen, Tammannstrasse 2, 37077 Göttingen, Germany.

出版信息

Chemistry. 2005 Nov 4;11(22):6583-92. doi: 10.1002/chem.200500560.

Abstract

The (E,Z,E)-1,3,5-hexatrienes 1a, 2a,b and 3b undergo 6pi-electrocyclization within 15-30 min upon heating to 200-215 degrees C. While the cyclohexene-annelated products 8a,b were stable, the analogous cyclopentene- and cycloheptene-annelated derivatives 7a and 9b easily underwent dehydrogenation to the corresponding aromatic compounds 10a and 12b during the work-up. The cyclohexadiene derivatives 8a,b were employed in thermal Diels-Alder reactions with 4-phenyl-3H-1,2,4-triazoline-3,5-dione (PTAD) and tetracyanoethylene (TCNE) to give the expected [4+2] cycloadducts 13a and 14a in good yields (60 and 78%). The initially formed cycloadduct of 8a and dimethyl acetylenedicarboxylate (DMAD) underwent a subsequent retro-Diels-Alder reaction to give the tetrahydronaphthalene 11b (47%). Under high pressure (10 kbar), the cycloadduct 15a was formed at room temperature and could be isolated in 44% yield. TCNE and N-phenylmaleimide with 8a under high pressure also led to the [4+2] cycloadducts 14a and 16a in good yields (60 and 77%). The 6pi-electrocyclization and subsequent Diels-Alder reaction, when performed as a one-pot domino process, provided direct access to Diels-Alder products of intermediately formed 6pi-electrocyclization products, for example from the 1,3,5-hexatrienes 1a,b, 2a,b, 3b and TCNE to the corresponding tricyclic products 17a,b, 14a,b, 18b in moderate to good yields (27-80%) depending on the nature of the alkoxycarbonyl group. Such sequential reactions with N-phenylmaleimide, maleic anhydride, dimethyl maleate and fumarodinitrile, the latter two under high pressure (10 kbar), worked as well to yield 16b (70%), 19a,b (19, 32%) and 20b (39%) and 21b (76%), respectively. With PTAD, however, the hexatrienes 2a,b reacted at ambient temperature without 6pi-electrocyclization to give the formal [4+2] cycloadducts 27a,b (48 and 46%), most probably via zwitterionic intermediates 23a,b and 25a,b.

摘要

(E,Z,E)-1,3,5-己三烯1a、2a、b和3b在加热至200 - 215℃时,15 - 30分钟内会发生6π-电环化反应。虽然环己烯并环产物8a、b是稳定的,但类似的环戊烯并环和环庚烯并环衍生物7a和9b在后处理过程中很容易脱氢生成相应的芳香族化合物10a和12b。环己二烯衍生物8a、b用于与4-苯基-3H-1,2,4-三唑啉-3,5-二酮(PTAD)和四氰基乙烯(TCNE)进行热狄尔斯-阿尔德反应,以良好的产率(60%和78%)得到预期的[4 + 2]环加成产物13a和14a。8a与二甲基乙炔二羧酸酯(DMAD)最初形成的环加成产物随后发生逆狄尔斯-阿尔德反应,生成四氢萘11b(47%)。在高压(10 kbar)下,环加成产物15a在室温下形成,产率为44%,可分离得到。高压下,TCNE和N-苯基马来酰亚胺与8a反应也能以良好的产率(60%和77%)得到[4 + 2]环加成产物14a和16a。6π-电环化反应及随后的狄尔斯-阿尔德反应若作为一锅多米诺反应进行,可直接得到中间形成的6π-电环化产物的狄尔斯-阿尔德产物,例如从1,3,5-己三烯1a、b、2a、b、3b和TCNE得到相应的三环产物17a、b、14a、b、18b,产率中等至良好(27 - 80%),具体取决于烷氧羰基的性质。与N-苯基马来酰亚胺、马来酸酐、马来酸二甲酯和富马腈进行的此类连续反应(后两者在高压(10 kbar)下)也能顺利进行,分别得到16b(70%)、19a、b(19%、32%)、20b(39%)和21b(76%)。然而,对于PTAD,己三烯2a、b在室温下反应,不发生6π-电环化,最有可能通过两性离子中间体23a、b和25a、b得到形式上的[4 + 2]环加成产物27a、b(48%和46%)。

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