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可移动金属:烯烃在非经典位点的催化双官能化反应

Walking metals: catalytic difunctionalization of alkenes at nonclassical sites.

作者信息

Dhungana Roshan K, Sapkota Rishi R, Niroula Doleshwar, Giri Ramesh

机构信息

Department of Chemistry, The Pennsylvania State University University Park Pennsylvania 16802 USA

出版信息

Chem Sci. 2020 Sep 7;11(36):9757-9774. doi: 10.1039/d0sc03634j.

Abstract

Migration of metals along a carbon chain is triggered by two of the most common organometallic elementary steps - β-hydride (β-H) elimination and alkene hydrometallation. This process heralds a new future for creating bonds at carbon sites that fall outside the tenets of the conventional wisdom for reactivity and bond formation, and provides an opportunity to leverage β-H elimination to advance the very reaction of alkene difunctionalization it is intrinsically predestined to disrupt. Almost four decades since its genesis, the early adventure for alkene difunctionalization by metal migration was sporadic, and its later development went on a hiatus primarily due to original impetus on arresting β-H elimination for vicinal alkene difunctionalization. With the recent surge on alkene difunctionalization, efforts have been gradually shifting to harnessing the process of β-H elimination to difunctionalize alkenes at sites other than the classical vicinal carbons, termed henceforth nonclassical reaction sites for pedagogical simplicity. In this review article, we extricate and examine the origin and the development of such reactions over the years. This review covers a wide range of reactions for the difunctionalization of alkenes at geminal (1,1), allylic (1,3) and remote (1,) carbon sites with a variety of coupling partners. These reactions have enabled engineering of complex molecular frameworks with the generation of new carbon-carbon (C-C)/C-C, C-C/C-heteroatom (halogens, O, N, B) and C-B/C-B bonds. The development of these unique transformations is also presented with mechanistic hypotheses and experimental evidences put forward by researchers. Judged by the number of reports emerging recently, it is now strikingly evident that the field of alkene difunctionalization by metal migration has begun to gain momentum, which holds a great future prospect to develop into a synthetic method of enormous potential.

摘要

金属沿着碳链的迁移是由两个最常见的有机金属基本步骤引发的——β-氢化物(β-H)消除和烯烃氢金属化。这一过程为在传统反应性和键形成原则之外的碳位点形成键开辟了新的前景,并提供了一个利用β-H消除来推进烯烃双官能化反应的机会,而该反应本质上注定会受到干扰。自其诞生近四十年来,通过金属迁移进行烯烃双官能化的早期探索是零星的,其后来的发展一度中断,主要是因为最初致力于阻止邻位烯烃双官能化中的β-H消除。随着最近烯烃双官能化研究的激增,人们的努力逐渐转向利用β-H消除过程,在除经典邻位碳以外的位点对烯烃进行双官能化,为便于教学,此后将这些位点称为非经典反应位点。在这篇综述文章中,我们梳理并审视了这些反应多年来的起源和发展。这篇综述涵盖了在偕位(1,1)、烯丙位(1,3)和远程(1,)碳位点上,烯烃与各种偶联伙伴进行双官能化的广泛反应。这些反应能够构建复杂的分子框架,生成新的碳-碳(C-C)/C-C、C-C/C-杂原子(卤素、O、N、B)和C-B/C-B键。文章还介绍了这些独特转化的发展情况,并提出了研究人员提出的机理假设和实验证据。从最近涌现的报道数量来看,现在很明显,通过金属迁移进行烯烃双官能化的领域已经开始蓬勃发展,具有发展成为一种极具潜力的合成方法的广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a49/8162390/c7d0da0ba32f/d0sc03634j-s1.jpg

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