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官能化环丙基酮的多米诺碳正离子环化反应:简便的一锅法合成周环和角稠合的多环芳烃及杂芳烃骨架。

Domino carbocationic cyclization of functionalized cyclopropyl ketones: facile one-pot access to peri- and angularly fused polycyclic aromatic and heteroaromatic frameworks.

作者信息

Nandi Sukumar, Kumar U K Syam, Ila Hiriyakkanavar, Junjappa Hiriyakkanavar

机构信息

Department of Chemistry, Indian Institute of Technology, Kanpur 208 106, U.P. India.

出版信息

J Org Chem. 2002 Jul 12;67(14):4916-23. doi: 10.1021/jo020230r.

Abstract

Conjugate adducts obtained by base-induced 1,4-addition-elimination of various aryl/heteroaryl acetonitriles with 1-(2-arylcyclopropyl)-3,3-(bismethylthio)-2-propen-1-ones have been shown to undergo facile acid-induced domino carbocationic rearrangement yielding a variety of substituted tricyclic aromatic and heteroaromatic frameworks in high yields in a one-pot operation. The methodology provides efficient, high-yield routes for synthesis of novel substituted dihydrophenalenes, dihydrobenzo[d,e]anthracene, cyclopenta[a]naphthalene, and fused heteroaromatics such as substituted 4,5-dihydrobenzo[c,d]indole, dihydronaphtho[1,8-b,c]thiophene, dihydroindeno[5,4-b]- and -[4,5-b]-thiophenes, cyclopenta[a]carbazole, and dihydrocyclopenta[e]indazol-3-one derivatives. The probable mechanism of this interesting domino process appears to involve stepwise or concomitant acid-induced ring opening and intramolecular cyclocondensation of cyclopropyl ketones to give benzo-fused arene (or heteroarene) intermediates bearing a reactive benzylic carbocation that is captured intramolecularly either by a preexisting aromatic (or heteroaromatic) ring or by a newly formed benzene ring to give either peri-fused or angularly fused products, respectively. Thus, the overall domino process entails formation of two C-C bonds, a substituted benzene ring along with a peri-fused cyclohexane or angularly fused cyclopentane ring in a single operation.

摘要

通过碱诱导各种芳基/杂芳基乙腈与1-(2-芳基环丙基)-3,3-(双甲硫基)-2-丙烯-1-酮进行1,4-加成消除反应得到的共轭加合物,已被证明能在酸诱导下轻松进行多米诺碳正离子重排,在一锅操作中以高产率生成各种取代的三环芳香和杂芳香骨架。该方法为合成新型取代二氢菲、二氢苯并[d,e]蒽、环戊[a]萘以及稠合杂芳烃,如取代的4,5-二氢苯并[c,d]吲哚、二氢萘并[1,8-b,c]噻吩、二氢茚并[5,4-b]-和-[4,5-b]-噻吩、环戊[a]咔唑以及二氢环戊[e]吲唑-3-酮衍生物提供了高效、高产率的路线。这个有趣的多米诺过程的可能机制似乎涉及环丙基酮的逐步或伴随酸诱导的开环和分子内环化缩合,以生成带有反应性苄基碳正离子的苯并稠合芳烃(或杂芳烃)中间体,该中间体通过预先存在的芳香(或杂芳香)环或新形成的苯环进行分子内捕获,分别得到周稠合或角稠合产物。因此,整个多米诺过程在一次操作中需要形成两个C-C键、一个取代苯环以及一个周稠合环己烷或角稠合环戊烷环。

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