Issue 5, 2021

Generation and precise control of sulfonyl radicals: visible-light-activated redox-neutral formation of sulfonates and sulfonamides

Abstract

The sulfonamidation or sulfonation of electron-deficient alkenes is the most direct way to furnish alkylsulfonamides or sulfonates, which are of importance for the discovery of new bioactive molecules in medicinal research. Herein we report a protocol for the generation and precise control of the sulfonyl radical from dimethylsulfamoyl chloride. Different kinds of alkyl sulfonates and sulfonamides were efficiently and selectively obtained under redox-neutral conditions by controlling the reactivity of photocatalysts. A mechanism for the generation of sulfamoyl and sulfonate radicals from dimethylsulfamoyl chloride and the followed sulfonation and sulfonamidation are proposed. This reaction system offers a distinct advantage over traditional oxidation or reduction sulfonation methods in not requiring the use of sulfur dioxide, sulfonic acid, a stoichiometric reductant, or a stoichiometric oxidant. Thus, it should be of practical value for the late-stage functionalization of natural products or medicines.

Graphical abstract: Generation and precise control of sulfonyl radicals: visible-light-activated redox-neutral formation of sulfonates and sulfonamides

Supplementary files

Article information

Article type
Research Article
Submitted
13 Nov 2020
Accepted
26 Dec 2020
First published
30 Dec 2020

Org. Chem. Front., 2021,8, 961-967

Generation and precise control of sulfonyl radicals: visible-light-activated redox-neutral formation of sulfonates and sulfonamides

M. Zhang, X. Ding, A. Lu, J. Kang, Y. Gao, Z. Wang, H. Li and Q. Wang, Org. Chem. Front., 2021, 8, 961 DOI: 10.1039/D0QO01413C

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