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吲哚的区域选择性直接C-烯基化反应

Regioselective Direct C-Alkenylation of Indoles.

作者信息

Petrini Marino

机构信息

School of Science and Technology, Chemistry Division, Università di Camerino, Via S. Agostino, 1., 62032, Camerino, Italy.

出版信息

Chemistry. 2017 Nov 16;23(64):16115-16151. doi: 10.1002/chem.201702124. Epub 2017 Sep 6.

Abstract

The direct introduction of alkenyl groups into the indole framework avoiding its preliminary functionalization can be carried out using different synthetic strategies. Transition-metal complexes facilitate the C-H activation of indoles or alkenes allowing an efficient Csp - Csp bond formation. The hydroindolation of alkynes catalyzed by the same metal complexes or various acidic promoters can also be pursued for the alkenylation process. Conjugate addition of electron-poor alkenes and direct condensation of carbonyl derivatives with indoles are also of interest for this purpose. The regiochemical control can be exploited using the intrinsic C-3 reactivity of the indole ring. The introduction of a suitable directing group at the nitrogen atom allows the preparation of C-2 alkenylated derivatives by transition metal catalyzed reactions. This review collects the fundamental contributions in this field reported in literature during the last fifteen years.

摘要

避免吲哚骨架预先官能化而直接将烯基引入其中,可以采用不同的合成策略来实现。过渡金属配合物有助于吲哚或烯烃的C-H活化,从而实现高效的Csp-Csp键形成。由相同金属配合物或各种酸性促进剂催化的炔烃氢吲哚化反应也可用于烯基化过程。贫电子烯烃的共轭加成以及羰基衍生物与吲哚的直接缩合反应在此方面也备受关注。利用吲哚环固有的C-3反应性可以实现区域化学控制。在氮原子上引入合适的导向基团,可以通过过渡金属催化反应制备C-2烯基化衍生物。本综述收集了过去十五年间文献中报道的该领域的重要贡献。

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