Issue 21, 2021

Visible-light-induced and copper-catalyzed oxidative cyclization of substituted o-aminophenylacetylene for the synthesis of quinoline and indole derivatives

Abstract

Herein, we report on the development of a mild and efficient intramolecular oxidative cyclization reaction of substituted aromatic enamines and the C(sp3)–H bond adjacent to nitrogen with alkynes or alkenes, leading to multi-substituted quinolines and indoles using dioxygen as a green oxidant. With visible light irradiation, a simple and cheap copper catalyst is able to functionalize the internal alkynes or alkenes via an intramolecular radical cyclization strategy without any extra photosensitizers. Preliminary mechanistic studies including radical capture reactions, isotope labeling experiments, and fluorescence quenching study are also conducted.

Graphical abstract: Visible-light-induced and copper-catalyzed oxidative cyclization of substituted o-aminophenylacetylene for the synthesis of quinoline and indole derivatives

Supplementary files

Article information

Article type
Research Article
Submitted
18 Jun 2021
Accepted
28 Aug 2021
First published
30 Aug 2021

Org. Chem. Front., 2021,8, 5988-5993

Visible-light-induced and copper-catalyzed oxidative cyclization of substituted o-aminophenylacetylene for the synthesis of quinoline and indole derivatives

Q. Huang, M. Zhao, Y. Yang, Y. Niu and X. Xia, Org. Chem. Front., 2021, 8, 5988 DOI: 10.1039/D1QO00914A

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