化学
立体选择性
糖基化
糖基
组合化学
基质(水族馆)
选择性
电化学
反离子
底物特异性
溶剂
反应条件
电解质
有机溶剂
区域选择性
化学选择性
糖基转移酶
立体化学
糖基供体
发散合成
作者
Peng Wang,Haiyang Huang,Qinghui Cai,Feihang Su,Jing Zhang,Xin‐Shan Ye,De‐Cai Xiong
摘要
Stereoselective glycosylation reactions pose considerable challenges in organic synthesis, and electro-driven glycosylation remains largely underexplored. In this study, we introduce an electrochemical glycosylation reaction that uses glycosyl imidates to achieve switchable stereoselectivity through changes in electrolyte composition. This glycosylation method enables the synthesis of a diverse range of O -glycosides and oligosaccharides with excellent stereoselectivity, and yields up to 98%. In addition, we performed a comparative analysis of our method against conventional techniques and found that it significantly surpasses Lewis-acid-catalyzed methods in terms of selectivity and substrate applicability. Our method provides a broad substrate scope, excellent stereoselectivity, compatibility with various functional groups, scalability for the synthesis of oligosaccharides, and high yields. Experimental and computational mechanistic studies reveal the intermediacy of aminyl radical and the crucial role of the counterion and solvent in reversing stereoselectivity in distinct pathways. As such, it represents a robust platform for the controlled assembly of carbohydrates with high stereoselectivity and efficiency and is a compelling example of electrosynthesis.
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