Issue 87, 2024

Chloride Induced S–C bond selective cleavage of disulfides to access unsymmetrical β-fluorodisulfides

Abstract

Selective S–C bond cleavage of disulfides presents a significant challenge due to the fact that S–S bonds are weaker than S–C bonds. In this study, we present a novel chloride-induced Selectfluor radical cation process for converting readily available symmetrical disulfides into unsymmetrical β-fluorodisulfides through selective S–C bond cleavage. Mechanistic investigations and DFT calculations suggest the involvement of a chlorinated disulfide radical, which subsequently reacts with alkenes to form β-fluorodisulfides via the atom transfer radical addition (ATRA) mechanism. Furthermore, this method exhibits broad functional group tolerance, enabling the synthesis of various target products in moderate to good yields.

Graphical abstract: Chloride Induced S–C bond selective cleavage of disulfides to access unsymmetrical β-fluorodisulfides

Supplementary files

Article information

Article type
Communication
Submitted
09 Aug 2024
Accepted
05 Oct 2024
First published
07 Oct 2024

Chem. Commun., 2024,60, 12714-12717

Chloride Induced S–C bond selective cleavage of disulfides to access unsymmetrical β-fluorodisulfides

T. Niu, J. Zhang, Y. He, M. Hong, L. Zhu and Y. Lan, Chem. Commun., 2024, 60, 12714 DOI: 10.1039/D4CC04065A

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