Photoredox Regioselective Thioesterification/Disulfuration of Alkenes

Abstract Disulfides and thioethers are important motifs in medicinal and agrochemical chemistry; however, the regioselective incorporation of distinct sulfur functional groups remains challenging because of the comparable reactivities of sulfur-centered radicals. Herein, we report a photocatalytic thioesterification/disulfuration of alkenes using tetrasulfides and acyl disulfides with broad scope and high regioselectivity. Mechanistic studies reveal that the photosensitive acyl trisulfides are generated and serve as oxidative quenchers of excited photocatalyst to form acylthio radicals and perthiolates, enabling the chemoselective difunctionalization of alkenes.

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Publication Details

Journal
Organic Letters
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.orglett.6c03493
Primary Topic
Sulfur-Based Synthesis Techniques
Type
article
Field-Weighted Citation Impact
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Photoredox Regioselective Thioesterification/Disulfuration of Alkenes

Wenchao Gao, Y. Li, MU Zhihong, Jun Tian et al.
Organic Letters
Sulfur-Based Synthesis Techniques
article

Photoredox Regioselective Thioesterification/Disulfuration of Alkenes

Wenchao Gao, Y. Li, MU Zhihong, Jun Tian, HongHong Chang, Chaofeng Zhang, Jingbiao Chen
article en

Abstract

Abstract Disulfides and thioethers are important motifs in medicinal and agrochemical chemistry; however, the regioselective incorporation of distinct sulfur functional groups remains challenging because of the comparable reactivities of sulfur-centered radicals. Herein, we report a photocatalytic thioesterification/disulfuration of alkenes using tetrasulfides and acyl disulfides with broad scope and high regioselectivity. Mechanistic studies reveal that the photosensitive acyl trisulfides are generated and serve as oxidative quenchers of excited photocatalyst to form acylthio radicals and perthiolates, enabling the chemoselective difunctionalization of alkenes.

Organic Letters
Taiyuan University of Technology (CN)
Openalex Percentile: Top 22%
Sulfur-Based Synthesis Techniques
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