Issue 8, 2025

Direct trideuteromethylselenation with a shelf-stable reagent Se-methyl-d3 selenosulfonate

Abstract

The direct incorporation of deuterated functional groups into organic molecules has emerged as a strategically important approach in synthetic chemistry. Among various deuterated moieties, the selenomethyl-d3 group has attracted significant attention but remains underexplored, primarily due to the limited availability of versatile synthetic precursors. In this work, we have developed an electrophilic trideuteromethylselenating reagent, Se-methyl-d3 benzenesulfonoselenoate with >99% D-incorporation. This reagent can be conveniently synthesized through a one-step procedure and enables efficient trideuteromethylselenation for diverse nucleophiles or electrophiles, including boronic acids, boronic esters, terminal alkynes, β-ketoesters, oxindoles and diazodium salts under mild reaction conditions. Furthermore, the difunctionalization of unactivated alkenes by simultaneous construction of C–S and C–SeCD3 bonds is well-documented. The utility of the odourless electrophilic SeCD3 reagent has been demonstrated through late-stage modification of various bioactive molecules.

Graphical abstract: Direct trideuteromethylselenation with a shelf-stable reagent Se-methyl-d3 selenosulfonate

Supplementary files

Article information

Article type
Research Article
Submitted
22 Dec 2024
Accepted
07 Feb 2025
First published
11 Feb 2025

Org. Chem. Front., 2025,12, 2592-2599

Direct trideuteromethylselenation with a shelf-stable reagent Se-methyl-d3 selenosulfonate

G. Guo, Y. Zhang, Z. Huang, W. Liu, X. Lu, Z. Liu, X. Xiao, Y. Bai and X. Shao, Org. Chem. Front., 2025, 12, 2592 DOI: 10.1039/D4QO02396J

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