对映选择合成
化学
重氮
卡宾
催化作用
反应性(心理学)
组合化学
立体化学
酰胺
环丙烷化
有机化学
立体异构
有机催化
计算化学
作者
Xuan-Ge Zhang,Junjia Chen,Mengchun Ye,Xiao-Hua Liu,Qi‐Lin Zhou
摘要
The development of novel chiral catalysts and the discovery of new mechanisms remain central to the advancement of asymmetric catalysis. Chiral hydrogen-bond-donor (HBD) catalysts have proven to be effective for mediating asymmetric proton-transfer reactions and are therefore widely applied in enantioselective N-H bond insertions. Herein, inspired by biological processes, we report a class of chiral isourea catalysts that enable highly enantioselective amide N-H insertion with α-alkyl diazo esters. Mechanistic and computational studies uncovered an unprecedented double proton-transfer mechanism, which is brought about by the unique properties of the isourea catalyst and forms the basis for the catalyst's exceptional reactivity and enantioselectivity.
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