Copper‐Mediated Selective Multiple Inert Chemical Bonds Cleavage for Cyanation of Indoles via Tandem Carbon and Nitrogen Atom Transfer

Author:

Xie Shimin1,Cai Fangfang1,Liu Lixin1,Su Lebin1,Dong Jianyu2,Zhou Yongbo1

Affiliation:

1. Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering Hunan University Changsha Hunan 410082 China

2. School of Physics and Chemistry Hunan First Normal University Changsha Hunan 410205 China

Abstract

Comprehensive SummaryThe activation of inert chemical bonds is an exciting area of research in chemistry because it enables the direct utilization of readily available starting materials and promotes atom‐ and step‐economic synthesis. Undoubtedly, selectively activating and transforming multiple inert chemical bonds is an even more intriguing and demanding task in synthetic chemistry. However, due to its inherent complexity and extreme challenges, this endeavour is rarely accomplished. We report a copper‐mediated complete cleavage and selective transformation of multiple inert chemical bonds of three easily available feedstocks, i.e., a sp2C—H bond in indoles, three sp3C—H bonds and one C—N bond in a methyl carbon atom in TMEDA, and the C≡N triple bond in CH3CN. This reaction proceeds via tandem carbon and nitrogen atom transfer, and allows for the direct and efficient cyanation of indoles, presenting a simple and direct alternative for synthesizing 3‐cyanoindoles.

Publisher

Wiley

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