对映体药物
电化学
组合化学
化学空间
有机合成
烷基
化学
有机化学
对映选择合成
药物发现
催化作用
电极
生物化学
物理化学
作者
Zenghui Ye,Yutao Wu,Na Chen,Hong Zhang,Kai Zhu,Mingruo Ding,Min Liu,Yong Li,Fengzhi Zhang
标识
DOI:10.1038/s41467-020-17389-w
摘要
Abstract Triazolopyridinone derivatives are of high value in both medicinal and material chemistry. However, the chiral or hindered triazolopyridinone derivatives remain an underexplored area of chemical space because they are difficult to prepare via conventional methods. Here we report an electrochemical rearrangement for the efficient synthesis of otherwise inaccessible triazolopyridinones with diverse alkyl carboxylic acids as starting materials. This enables the efficient preparation of more than 60 functionalized triazolopyridinones under mild conditions in a sustainable manner. This method is evaluated for the late stage modification of bioactive natural products, amino acids and pharmaceuticals, and it is further applied to the decagram scale preparation of enantiopure triazolopyridinones. The control experiments support a mechanism involving an oxidative cyclization and 1,2-carbon migration. This facile and scalable rearrangement demonstrates the power of electrochemical synthesis to access otherwise-inaccessible triazolopyridinones and may find wide application in organic, material and medicinal chemistry.
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