Issue 20, 2023

Photocatalyst- and transition-metal-free syntheses of furan-fused dihydroazepines by visible light

Abstract

The visible-light-induced atom-economical synthesis of furan-fused dihydroazepine derivatives under transition-metal and photocatalyst-free conditions is presented. This efficient new method exhibits a broad scope and is environmentally benign and mild with metal-/photocatalyst and external additive-free conditions and moderate to good yields. Several late-stage modifications of the obtained compounds have been accomplished, including the successful synthesis of tetrahydro-6H-benzo[4′,5′]azepino[3′,2′:4,5]furo[3, 2-c]quinolin-6-ones. Additionally, the reaction mechanism has been studied by several control experiments, including the successful isolation of the reaction intermediate. These results reveal that the transition-metal and photocatalyst-free transformation may proceed via non-radical pathways. The gram-scale reaction renders the approach practical and attractive. Also, the green chemistry metrics evaluation signifies that the process is green and cost-effective.

Graphical abstract: Photocatalyst- and transition-metal-free syntheses of furan-fused dihydroazepines by visible light

Supplementary files

Article information

Article type
Paper
Submitted
01 Jul 2023
Accepted
22 Aug 2023
First published
08 Sep 2023

Green Chem., 2023,25, 8074-8081

Photocatalyst- and transition-metal-free syntheses of furan-fused dihydroazepines by visible light

B. S. Gore, C. Kuo and J. Wang, Green Chem., 2023, 25, 8074 DOI: 10.1039/D3GC02364H

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