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过渡金属催化的非活化烯烃双官能化反应。

Transition Metal-Catalyzed Dicarbofunctionalization of Unactivated Olefins.

机构信息

Department of Chemistry & Chemical Biology, The University of New Mexico, Albuquerque, NM 87131, USA.

出版信息

Chem Rec. 2018 Sep;18(9):1314-1340. doi: 10.1002/tcr.201700098. Epub 2018 Mar 8.

Abstract

Transition metal (TM)-catalyzed difunctionalization of unactivated olefins with two carbon-based entities is a powerful method to construct complex molecular architectures rapidly from simple and readily available feedstock chemicals. While dicarbofunctionalization of unactivated olefins has a long history typically with the use of either carbon monoxide to intercept C(sp )-[M] (alkyl-TM) species or substrates lacking in β-hydrogen (β-Hs), development of this class of reaction still remains seriously limited due to complications of β-H elimination arising from the in situ-generated C(sp )-[M] intermediates. Over the years, different approaches have been harnessed to suppress β-H elimination, which have led to the development of various types of olefin dicarbofunctionalization reactions even in substrates that generate C(sp )-[M] intermediates bearing β-Hs with a wide range of electrophiles and nucleophiles. In this review, these developments will be discussed both through the lens of historical perspectives as well as the strategies scrutinized over the years to address the issue of β-H elimination. However, this review article by no means is designed to be exhaustive in the field, and is merely presented to provide the readers an overview of the key reaction developments.

摘要

过渡金属(TM)催化的未活化烯烃与两个碳基实体的双官能化是一种快速构建复杂分子结构的有效方法,可从简单易得的原料化学品中得到。虽然未活化烯烃的双官能化具有悠久的历史,通常使用一氧化碳来拦截 C(sp )-[M](烷基-TM)物种或缺乏β-氢(β-Hs)的底物,但由于原位生成的 C(sp )-[M]中间体引起的β-H 消除的复杂性,此类反应的发展仍然受到严重限制。多年来,人们利用了不同的方法来抑制β-H 消除,这导致了各种类型的烯烃双官能化反应的发展,即使在生成带有广泛亲电和亲核试剂的β-Hs 的 C(sp )-[M]中间体的底物中也是如此。在这篇综述中,将从历史角度以及多年来研究的策略来讨论这些发展,以解决β-H 消除的问题。然而,这篇综述文章绝不是要涵盖该领域的所有内容,而只是为读者提供关键反应发展的概述。

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