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过渡金属介导的碳-硫键活化与转化:最新进展

Transition-metal mediated carbon-sulfur bond activation and transformations: an update.

作者信息

Lou Jiang, Wang Quannan, Wu Ping, Wang Hongmei, Zhou Yong-Gui, Yu Zhengkun

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, P. R. China.

State Key Laboratory of NBC Protection for Civilian, Beijing 102205, P. R. China.

出版信息

Chem Soc Rev. 2020 May 27. doi: 10.1039/c9cs00837c.

Abstract

Carbon-sulfur bond cross-coupling has become more and more attractive as an alternative protocol to establish carbon-carbon and carbon-heteroatom bonds. Diverse transformations through transition-metal-catalyzed C-S bond activation and cleavage have recently been developed. This review summarizes the advances in transition-metal-catalyzed cross-coupling via carbon-sulfur bond activation and cleavage since late 2012 as an update of the critical review on the same topic published in early 2013 (Chem. Soc. Rev., 2013, 42, 599-621), which is presented by the categories of organosulfur compounds, that is, thioesters, thioethers including heteroaryl, aryl, vinyl, alkyl, and alkynyl sulfides, ketene dithioacetals, sulfoxides including DMSO, sulfones, sulfonyl chlorides, sulfinates, thiocyanates, sulfonium salts, sulfonyl hydrazides, sulfonates, thiophene-based compounds, and C[double bond, length as m-dash]S functionality-bearing compounds such as thioureas, thioamides, and carbon disulfide, as well as the mechanistic insights. An overview of C-S bond cleavage reactions with stoichiometric transition-metal reagents is briefly given. Theoretical studies on the reactivity of carbon-sulfur bonds by DFT calculations are also discussed.

摘要

作为构建碳-碳键和碳-杂原子键的一种替代方法,碳-硫键交叉偶联已变得越来越有吸引力。最近,通过过渡金属催化的C-S键活化和裂解实现了多种转化。本综述总结了自2012年末以来过渡金属催化的通过碳-硫键活化和裂解进行交叉偶联的研究进展,作为对2013年初发表的关于同一主题的批判性综述(《化学学会评论》,2013年,42卷,599 - 621页)的更新,该综述按有机硫化合物的类别进行阐述,即硫酯、硫醚(包括杂芳基、芳基、乙烯基、烷基和炔基硫醚)、烯酮二硫代缩醛、亚砜(包括二甲基亚砜)、砜、磺酰氯、亚磺酸盐、硫氰酸盐、锍盐、磺酰肼、磺酸盐、基于噻吩的化合物以及含有C=S官能团的化合物(如硫脲、硫代酰胺和二硫化碳),同时还介绍了相关的机理见解。简要概述了使用化学计量的过渡金属试剂进行的C-S键裂解反应。还讨论了通过密度泛函理论计算对碳-硫键反应性的理论研究。

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