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α,α-二氰基烯烃与缺电子 1,3-共轭烯炔的基底催化串联迈克尔/去氢-Diels-Alder 反应:一种构建角稠合多环化合物的简便方法。

Base-catalyzed tandem Michael/dehydro-Diels-Alder reaction of α,α-dicyanoolefins with electron-deficient 1,3-conjugated enynes: a facile entry to angularly fused polycycles.

机构信息

Shanghai Key Laboratory of Green Chemistry and Chemical Processes. Department of Chemistry, East China Normal University, Shanghai 200062 (P. R. China).

出版信息

Chemistry. 2014 Jan 7;20(2):399-404. doi: 10.1002/chem.201302960. Epub 2013 Dec 2.

Abstract

Angularly fused carbocyclic frameworks and their heteroatom-substituted analogues exist in many natural products that display a broad and interesting range of biological activities. Preparation of polycyclic products by cycloaddition reactions have been the long-standing hot topic in the synthetic community. Dehydro-Diels-Alder (DDA) reactions are one class of dehydropericyclic reactions that are derived conceptually by systematic removal of hydrogen atom pairs. A base-promoted tandem Michael addition and DDA reaction of α,α-dicyanoolefins with electron-deficient 1,3-conjugated enynes was realized in which a DDA reaction takes place between the arylalkynes and electron-deficient tetrasubstituted olefin. The control experiments support the stepwise anionic reaction pathway rather than the concerted reaction pathway.

摘要

角型稠合碳环骨架及其杂原子取代类似物存在于许多显示出广泛而有趣的生物活性的天然产物中。通过加成反应制备多环产物一直是合成界的热门话题。脱氢-Diels-Alder (DDA) 反应是一类脱氢周环反应,它们从概念上可以通过系统地去除氢原子对来得到。在强碱促进下,α,α-二氰基烯烃与缺电子的 1,3-共轭烯炔发生串联迈克尔加成和 DDA 反应,其中芳基炔烃和缺电子的四取代烯烃之间发生 DDA 反应。控制实验支持分步阴离子反应途径而不是协同反应途径。

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