Issue 7, 2026

Substrate-initiated radical relay: redox-neutral iodo/bromo sulfoximination of alkynes

Abstract

A substrate-initiated radical relay is developed for the redox-neutral iodo/bromo sulfoximination of alkynes under mild, metal-free conditions. This strategy exploits the intrinsic oxidative potential of sulfoximidoyl chlorides to promote single-electron transfer with halide anions, generating sulfoximinyl and halogen radicals in situ without external oxidants or catalysts. The transformation delivers (E)-β-haloalkenyl sulfoximines in up to 96% yield with broad functional-group tolerance and excellent stereoselectivity. Mechanistic investigations supported by cyclic voltammetry and density functional theory calculations reveal that a substrate-driven single-electron transfer process governs radical formation and stereochemical control. The resulting β-haloalkenyl sulfoximines represent heteroatom-rich alkene scaffolds that may serve as useful intermediates for further molecular diversification in synthetic and medicinal chemistry. This redox-economical approach establishes a new mechanistic strategy for substrate-controlled radical difunctionalization in sulfoximine chemistry.

Graphical abstract: Substrate-initiated radical relay: redox-neutral iodo/bromo sulfoximination of alkynes

Supplementary files

Article information

Article type
Paper
Submitted
20 Dec 2025
Accepted
21 Jan 2026
First published
27 Jan 2026

New J. Chem., 2026,50, 3267-3274

Substrate-initiated radical relay: redox-neutral iodo/bromo sulfoximination of alkynes

S. Zhang, J. Deng, J. Wang, B. Lv, P. Weng, Y. Wang and X. Wan, New J. Chem., 2026, 50, 3267 DOI: 10.1039/D5NJ04903B

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