金属催化C(sp2) -N键形成的反应:近年来的研究进展

IF 7 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Russian Chemical Reviews Pub Date : 2021-01-01 DOI:10.1070/RCR4999
I. Beletskaya, A. Averin
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引用次数: 2

摘要

综述了C(sp2) -N键形成的主要催化方法,包括Buchwald-Hartwig钯催化芳基和杂芳基卤化物的胺化反应,Ullmann化学的复兴,即利用铜配合物催化形成碳-氮键,以及(杂)芳基硼酸与胺的Chan-Lam反应。此外,氧化胺化与C-H活化,这已经蓬勃发展,在过去的十年,是解决。重点介绍了多相化催化剂的应用成果。参考书目包括350篇参考文献。
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Metal-catalyzed reactions for the C(sp2)–N bond formation: achievements of recent years
The review deals with the main catalytic methods for the C(sp2)–N bond formation, including Buchwald–Hartwig palladium-catalyzed amination of aryl and heteroaryl halides, renaissance of the Ullmann chemistry, i.e., the application of catalysis by copper complexes to form the carbon–nitrogen bond, and Chan–Lam reactions of (hetero)arylboronic acids with amines. Also, oxidative amination with C–H activation, which has been booming during the last decade, is addressed. Particular attention is paid to achievements in the application of heterogenized catalysts. The bibliography includes 350 references.
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来源期刊
Russian Chemical Reviews
Russian Chemical Reviews 化学-化学综合
CiteScore
13.00
自引率
5.20%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Russian Chemical Reviews serves as a complete translation of the esteemed monthly review journal Uspekhi Khimii, which has been a prominent figure in Russian scientific journals since its establishment in 1932. It offers comprehensive access to the advancements made by chemists from Russia and other former Soviet Union countries. Established in 1932, Russian Chemical Reviews is committed to publishing timely and significant review articles encompassing various facets of modern chemistry, including chemical physics, physical chemistry, computational and theoretical chemistry, catalysis, coordination chemistry, analytical chemistry, organic, organometallic, and organoelement chemistry, chemistry of macromolecules, applied chemistry, biochemistry, bio-organic chemistry, biomolecular chemistry, medicinal chemistry, materials chemistry, nanochemistry, nanostructures, and environmental chemistry.
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