对映选择合成
化学
烯烃
铑
化学选择性
立体中心
催化作用
组合化学
烷基
功能群
立体化学
有机化学
聚合物
作者
Patrick J. Gross,Hoyoung Im,David Laws,Bohyun Park,Mu‐Hyun Baik,Simon B. Blakey
摘要
Chiral aziridines are important structural motifs found in natural products and various target molecules. They serve as versatile building blocks for the synthesis of chiral amines. While advances in catalyst design have enabled robust methods for enantioselective aziridination of activated olefins, simple and abundant alkyl-substituted olefins pose a significant challenge. In this work, we introduce a novel approach utilizing a planar chiral rhodium indenyl catalyst to facilitate the enantioselective aziridination of unactivated alkenes. This transformation exhibits a remarkable degree of functional group tolerance and displays excellent chemoselectivity favoring unactivated alkenes over their activated counterparts, delivering a wide range of enantioenriched high-value chiral aziridines. Computational studies unveil a stepwise aziridination mechanism in which alkene migratory insertion plays a central role. This process results in the formation of a strained four-membered metallacycle and serves as both the enantio- and rate-determining steps in the overall reaction.
科研通智能强力驱动
Strongly Powered by AbleSci AI