对映选择合成
电催化剂
立体选择性
催化作用
金鸡纳
组合化学
对偶(语法数字)
化学
手性(物理)
艾地明
电化学
有机催化
不对称诱导
动力学分辨率
喹喔啉
合理设计
生物催化
立体异构
氨基酸
不对称氢化
钴
立体中心
有机化学
电子转移
金鸡纳生物碱
单体
立体化学
酶催化
作者
Lingzi Peng,Juan LI,Minghao Liu,Wenjie Qin,Gefei Wang,Jin Song,Liu-Zhu Gong,Chang Guo
出处
期刊:Nature Catalysis
[Nature Portfolio]
日期:2026-01-09
卷期号:9 (2): 112-122
被引量:1
标识
DOI:10.1038/s41929-025-01474-8
摘要
Pyridoxal and its derivatives play crucial roles in mediating a diverse range of reactions in both enzyme-catalysed and chemically synthesized transformations. Here, inspired by nature, we have established a dual Co/pyridoxal electrocatalysis that tames radical intermediates for asymmetric transformations, thereby surpassing natural capabilities and uncovering catalytic processes to produce high-value quaternary amino esters with excellent enantioselectivity and functional-group tolerance. Distinctive chiral cobalt catalysts with ligands derived from cinchona alkaloid have been designed to mimic enzyme function, regulating the chiral cavity and creating an optimal chiral environment that consistently coordinates aldimine and electrochemically induced azaallyl radical intermediates to induce excellent stereoselectivity in biomimetic polar and radical reactions. Such enzyme-inspired electrocatalysis introduces a strategy for stereoselective intermolecular radical reactions, unlocking a potent platform for sustainable enantioselective synthesis. Electrocatalysis is a powerful tool in organic synthesis, but asymmetric strategies are still less developed. Now a cobalt/pyridoxal electrocatalytic system facilitates electrochemical single-electron transfer and asymmetric induction for the enantioselective generation of α-quaternary amino esters.
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