Issue 14, 2023

Visible-light-induced iron-catalyzed synthesis of N-aryl amides from nitroarenes and chloroalkanes

Abstract

An unprecedented straightforward reductive amidation of chloroalkanes with nitroarenes was readily accomplished by merging iron catalysis with visible-light photoredox catalysis. A variety of commercially inexpensive abundant nitroarenes and chloroalkanes were utilized directly for the preparation of diverse N-aryl amides under environmentally benign mild conditions. This protocol featured an avoidance of exogenous reductant and photocatalyst, simple manipulations, low cost, high step economy and good functional group tolerance. Moreover, during a preliminary investigation of the reaction mechanism, nitrone was isolated and identified as a possible active intermediate, which suggested the involvement of a successive two-step rearrangement in the catalytic cycle.

Graphical abstract: Visible-light-induced iron-catalyzed synthesis of N-aryl amides from nitroarenes and chloroalkanes

Supplementary files

Article information

Article type
Paper
Submitted
10 May 2023
Accepted
23 Jun 2023
First published
24 Jun 2023

Green Chem., 2023,25, 5735-5740

Visible-light-induced iron-catalyzed synthesis of N-aryl amides from nitroarenes and chloroalkanes

Q. Zhang, W. Liu, Y. Zhou and F. Zhang, Green Chem., 2023, 25, 5735 DOI: 10.1039/D3GC01544K

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