Remote C(sp3)–H cyanation and deuteration of amides via photoredox catalysis

Abstract

Selective functionalization of remote C(sp3)–H bonds represents a major challenge in organic synthesis. We report a unified visible-light photoredox catalytic strategy for remote C(sp3)–H cyanation and deuteration of amides. Key to this approach is the in situ generation of aryl radicals from ortho-iodobenzoyl-derived amides, which triggers intramolecular 1,5-hydrogen atom transfer to form α-carbon radicals. These intermediates undergo divergent trapping to afford α-cyano- or α-deuterated amides. The cyanation protocol features broad substrate scope, good to excellent yields, and late-stage functionalization capability. The deuteration protocol, using D2O, delivers α-deuterated amides with high deuterium incorporation and functional group tolerance. Mechanistic studies support a pathway involving aryl radical-mediated 1,5-HAT. This strategy offers an efficient and general route to valuable α-functionalized amide derivatives from readily available precursors.

Graphical abstract: Remote C(sp3)–H cyanation and deuteration of amides via photoredox catalysis

Supplementary files

Article information

Article type
Research Article
Submitted
25 Dec 2025
Accepted
23 Jan 2026
First published
27 Jan 2026

Org. Chem. Front., 2026, Advance Article

Remote C(sp3)–H cyanation and deuteration of amides via photoredox catalysis

W. Yan, J. Tu, Z. Li, L. Guo, J. Shen, C. Yang and W. Xia, Org. Chem. Front., 2026, Advance Article , DOI: 10.1039/D5QO01746G

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