立体中心
钴
手性(物理)
催化作用
对映选择合成
光催化
金属
发色团
化学
组合化学
材料科学
光化学
有机化学
物理
量子力学
手征对称破缺
Nambu–Jona Lasinio模型
夸克
作者
Su‐Yang Yao,Marco Villa,Zheng Yuan,Antonio Fiorentino,Barbara Ventura,Sergei I. Ivlev,Paola Ceroni,Eric Meggers
标识
DOI:10.1038/s41467-025-61727-9
摘要
For decades, progress in chiral transition metal catalysis has been closely linked to the design of tailor-made chiral ligands. Recently, an alternative to this conventional paradigm has emerged in which the overall chirality of the catalysts arises solely from a stereogenic metal center. However, the development of such chiral-at-metal catalysts based on earth-abundant metals is still a formidable challenge. Here, we report a reactive chiral-at-cobalt catalyst comprised entirely of achiral ligands, more than a century after Alfred Werner first introduced chiral cobalt complexes with exclusive metal-centered chirality. The cobalt center uniquely serves multiple functions: it is the sole stereocenter, redox center, catalytic site, and a chromophore. While the cobalt(III) complex is inert and bench-stable under ambient conditions, it can be photoactivated through an unexpected counterion-assisted mechanism, reducing inert cobalt(III) to catalytically active cobalt(II). This chiral-at-cobalt complex enables the visible-light-activated enantioselective conversion of isoxazoles into chiral 2H-azirines, achieving high enantiomeric excess of up to 97%.
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