化学
立体中心
对映选择合成
光催化
亚砜
组合化学
催化作用
自由基环化
催化循环
立体化学
自由基离子
烷基
键裂
功能群
不对称诱导
电子转移
试剂
亲核细胞
吖啶
药物化学
有机化学
电泳剂
作者
Sachchida Nand,Shree Krishna Dhakal,Ramon Trevino,Babu Raj Dhungana,William T. Thompson,Chandan Kumar Giri,Vy T. B. Nguyen,Jacob Sanchez,Ramy Elerian,Dylan P. Moran,Toby T. Skaria,Hadi D. Arman,Oleg V. Larionov
摘要
Abstract Stereogenic sulfur functional groups constitute an important class of chiral motifs with broad utility in medicinal chemistry, asymmetric synthesis, and catalysis, yet catalytic strategies for their enantioselective construction from simple and abundant precursors remain limited. We report herein a previously unexplored enantioconvergent decarboxylative sulfinylation of carboxylic acids enabled by a merger of acridine photocatalysis and cobalt-catalyzed asymmetric carbon–sulfur bond formation. This catalytic platform leverages stable N-sulfinylphthalimides as sulfinyl group transfer reagents and proceeds through a stereoablative S–N bond cleavage process that generates a sulfinyl radical under mild conditions. The method provides efficient access to chiral sulfoxides with high enantioselectivity. Mechanistic studies revealed that acridinyl radical-mediated PCET activation of the sulfinamide reagent, followed by selective cobalt-catalyzed sulfinyl radical trapping and coupling of the resulting sulfinyl-cobalt intermediate with an alkyl radical collectively underpin the observed stereocontrol and efficiency. Together, these findings establish a mechanistically distinct blueprint for asymmetric radical sulfoxide synthesis and open new avenues for catalytic strategies that leverage stereoablative radical processes to access sulfur-centered stereogenic motifs.
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