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过渡金属催化的氧化交叉偶联反应形成 C-C 键,涉及作为亲核试剂的有机金属试剂。

Transition-metal catalyzed oxidative cross-coupling reactions to form C-C bonds involving organometallic reagents as nucleophiles.

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, P. R. China.

出版信息

Chem Soc Rev. 2011 May;40(5):2761-76. doi: 10.1039/c0cs00125b. Epub 2011 Jan 31.

Abstract

Transition-metal-catalyzed coupling reactions have become a versatile tool for chemical bond formation. From the variation of the coupling partners, coupling reactions can be classified into three models: traditional coupling, reductive coupling and oxidative coupling. The oxidative coupling, which is different from the traditional coupling, occurs between two nucleophiles. This critical review focuses on transition-metal-catalyzed oxidative coupling reactions involving organometallic reagents as nucleophiles. Since the scope of the oxidative coupling is highly diversified, this paper only reviews the oxidative coupling reactions concerning C-C bond formation, including the coupling between organometal reagents and hydrocarbons as well as coupling between two organometal reagents. Since terminal alkynes are normally activated by metal salts and in situ form the alkynyl metal reagents in coupling reactions, they are directly considered as organometal reagents in this review. Intramolecular oxidative couplings and oxidative cyclizations are not included in this critical review. Moreover, there are many examples of oxidative coupling leading to the formation of functional materials, such as the oxidative polymerization of thiophenes. Since several reviews in these areas have been published they are not included in this review either (99 references).

摘要

过渡金属催化偶联反应已成为化学成键的一种通用工具。根据偶联伙伴的变化,偶联反应可分为三种模式:传统偶联、还原偶联和氧化偶联。氧化偶联与传统偶联不同,发生在两个亲核试剂之间。这篇综述重点关注涉及有机金属试剂作为亲核试剂的过渡金属催化氧化偶联反应。由于氧化偶联的范围高度多样化,本文仅综述涉及 C-C 键形成的氧化偶联反应,包括有机金属试剂与烃的偶联以及两个有机金属试剂的偶联。由于末端炔烃通常被金属盐激活,并在偶联反应中就地形成炔基金属试剂,因此在本综述中它们被直接视为有机金属试剂。本文不包括分子内氧化偶联和氧化环化反应。此外,还有许多氧化偶联形成功能材料的例子,如噻吩的氧化聚合。由于这些领域的许多例子已经发表,因此本文也不包括这些内容(99 篇参考文献)。

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