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Unlocking Sulfurdiimide Reagents as Radical Traps in the Decarboxylative Synthesis of Sulfinamidines

Suzanne E. Davison, Jonathan A. Andrews, Agamemnon E. Crumpton, Cherry Chung, Mireia Sidera Portela, Michael C. Willis

Revista con revisión por pares

En palabras de los autores

Abstract Aza-sulfur(IV) and (VI) compounds are emerging motifs in medicinal and crop protection chemistry, creating a demand for new methodologies for their challenging synthesis. Sulfurdiimides, the diaza analogues of sulfur dioxide, remain underexplored in their potential to access aza-sulfur compounds, in particular their use as radical traps has not been reported. Here, we describe the synthesis of a new series of stable unsymmetrical sulfurdiimide reagents, which through choice of N-substituent, can be electronically tuned to unlock radical trapping reactivity. Taking advantage of the wide abundance of commercially available carboxylic acids, we have developed an acridine/copper cocatalyzed decarboxylative addition into sulfurdiimide reagents, to deliver a diverse range of sulfinamidine products. The method is scalable, and exhibits good functional group tolerance, and provides an efficient platform to access complex aza-sulfur(VI) functional groups.

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Apareció: viernes, 25 de septiembre. Journal of the American Chemical Society. Revista con revisión por pares.

DOI: 10.1021/jacs.6c14601