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锰(I)催化酰胺与醇的α-烯基化反应并释放氢气和水

Manganese(I) Catalyzed α-Alkenylation of Amides Using Alcohols with Liberation of Hydrogen and Water.

作者信息

Pandia Biplab Keshari, Gunanathan Chidambaram

机构信息

School of Chemical Sciences, National Institute of Science Education and Research, Homi Bhabha National Institute, Bhubaneswar-752050, India.

出版信息

J Org Chem. 2021 Aug 6;86(15):9994-10005. doi: 10.1021/acs.joc.1c00685. Epub 2021 Jul 13.

Abstract

Herein, unprecedented manganese-catalyzed direct α-alkenylation of amides using alcohols is reported. Aryl amides are reacted with diverse primary alcohols, which provided the α,β-unsaturated amides in moderate to good yields with excellent selectivity. Mechanistic studies indicate that Mn(I) catalyst oxidizes the alcohols to their corresponding aldehydes and also plays an important role in efficient C═C bond formation through aldol condensation. This selective olefination is facilitated by metal-ligand cooperation by the aromatization-dearomatization process operating in the catalytic system. Biorenewable alcohols are used as alkenylation reagents for the challenging α-alkenylation of amides with the highly abundant base metal manganese as a catalyst, which results in water and dihydrogen as the only byproduct, making this catalytic transformation attractive, sustainable, and environmentally benign.

摘要

本文报道了前所未有的锰催化酰胺与醇的直接α-烯基化反应。芳基酰胺与多种伯醇反应,以中等至良好的产率和优异的选择性得到α,β-不饱和酰胺。机理研究表明,Mn(I)催化剂将醇氧化为相应的醛,并且在通过羟醛缩合高效形成C═C键中起重要作用。催化体系中通过芳构化-去芳构化过程的金属-配体协同作用促进了这种选择性烯基化反应。生物可再生醇被用作酰胺具有挑战性的α-烯基化反应的烯基化试剂,以高丰度贱金属锰作为催化剂,该反应仅产生水和氢气作为副产物,使得这种催化转化具有吸引力、可持续性且环境友好。

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