亲核细胞
简单(哲学)
机制(生物学)
化学
计算化学
化学物理
物理
有机化学
认识论
哲学
催化作用
量子力学
作者
Yaxin Zeng,Han Gao,Zhong‐Tao Jiang,Yulei Zhu,Junyun Chen,Han Zhang,Gang Lü,Ying Xia
标识
DOI:10.1038/s41467-024-48541-5
摘要
Abstract Transition-metal catalyzed allylic substitution reactions of alkenes are among the most efficient methods for synthesizing diene compounds, driven by the inherent preference for an inner-sphere mechanism. Here, we present a demonstration of an outer-sphere mechanism in Rh-catalyzed allylic substitution reaction of simple alkenes using gem -difluorinated cyclopropanes as allyl surrogates. This unconventional mechanism offers an opportunity for the fluorine recycling of gem -difluorinated cyclopropanes via C − F bond cleavage/reformation, ultimately delivering allylic carbofluorination products. The developed method tolerates a wide range of simple alkenes, providing access to secondary, tertiary fluorides and gem -difluorides with 100% atom economy. DFT calculations reveal that the C − C bond formation goes through an unusual outer-sphere nucleophilic substitution of the alkenes to the allyl-Rh species instead of migration insertion, and the generated carbon cation then forms the C − F bond with tetrafluoroborate as a fluoride shuttle.
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