Catalytic asymmetric nucleophilic fluorination using BF3·Et2O as fluorine source and activating reagent

Catalytic asymmetric fluorination remains elusive, especially the longstanding stereochemical challenges which exist in BF3Et2O-based fluorinations. Here the authors show a catalytic asymmetric nucleophilic fluorination using BF3·Et2O as the fluorine reagent in the presence of chiral iodine catalyst...

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Autores principales: Weiwei Zhu, Xiang Zhen, Jingyuan Wu, Yaping Cheng, Junkai An, Xingyu Ma, Jikun Liu, Yuji Qin, Hao Zhu, Jijun Xue, Xianxing Jiang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/192debc183404b709840ddf4ba15cc9e
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Sumario:Catalytic asymmetric fluorination remains elusive, especially the longstanding stereochemical challenges which exist in BF3Et2O-based fluorinations. Here the authors show a catalytic asymmetric nucleophilic fluorination using BF3·Et2O as the fluorine reagent in the presence of chiral iodine catalyst.