化学
电泳剂
反应性(心理学)
催化作用
钴
亲核细胞
组合化学
试剂
电化学
极性(国际关系)
激进的
分子
表面改性
光化学
有机化学
电极
物理化学
病理
医学
替代医学
生物化学
细胞
作者
Michał Ociepa,Aleksandra J. Wierzba,Joanna Turkowska,Dorota Gryko
摘要
Strain-release-driven methodology is a powerful tool for accessing structural motifs, highly desirable by the pharmaceutical industry. The reactivity of spring-loaded cyclic reagents is dominated by transformations relying on their inherent electrophilic reactivity. Herein, we present a polarity-reversal strategy based on light-driven cobalt catalysis, which enables the generation of nucleophilic radicals through strain release. The applicability of this methodology is demonstrated by the design of two distinct types of reactions: Giese-type addition and Co/Ni-catalyzed cross-coupling. Moreover, a series of electrochemical, spectroscopic, and kinetic experiments as well as X-ray structural analysis of the intermediate alkylcobalt(III) complex give deeper insight into the mechanism of the reaction.
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