Issue 13, 2023

Photocarboxylation of remote C–H bonds through nitrogen-centred radical 1,5-hydrogen atom transfer

Abstract

The carboxylation of the C–H bond utilizing CO2 represents a challenging but attractive tactic for capitalizing on the abundant availability of CO2 in organic synthesis. In this investigation, we report visible-light-driven carboxylation of a remote C–H bond via a nitrogen-centered 1,5-hydrogen atom transfer (1,5-HAT) mechanism. The achievement of direct photocarboxylation of the remote benzylic C–H bond has been realized. The functionalization of electron-deficient alkenes, in conjunction with remote aliphatic C–H bonds and CO2, has been developed employing the 1,5-HAT strategy as well. These methods enable the photocarboxylation of different types of C–H bonds and feature mild reaction conditions, a comprehensive range of substrates, and exceptional functional group tolerance, providing a sustainable and eco-friendly approach to valuable carboxylic acids and derivatives.

Graphical abstract: Photocarboxylation of remote C–H bonds through nitrogen-centred radical 1,5-hydrogen atom transfer

Supplementary files

Article information

Article type
Communication
Submitted
02 May 2023
Accepted
13 Jun 2023
First published
14 Jun 2023

Green Chem., 2023,25, 5030-5034

Photocarboxylation of remote C–H bonds through nitrogen-centred radical 1,5-hydrogen atom transfer

W. Li, B. Sun, L. Zhang and F. Mo, Green Chem., 2023, 25, 5030 DOI: 10.1039/D3GC01426F

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