光催化
表面改性
合成子
区域选择性
化学
组合化学
催化作用
艾伦
对映选择合成
有机催化
对称化
有机化学
立体化学
光催化
物理化学
作者
Feng‐Hua Zhang,Xiaochong Guo,Xianrong Zeng,Zhaobin Wang
标识
DOI:10.1038/s41467-022-32614-4
摘要
Abstract The merger of photoredox and transition-metal catalysis has evolved as a robust platform in organic synthesis over the past decade. The stereoselective 1,4-functionalization of 1,3-enynes, a prevalent synthon in synthetic chemistry, could afford valuable chiral allene derivatives. However, tremendous efforts have been focused on the ionic reaction pathway. The radical-involved asymmetric 1,4-functionalization of 1,3-enynes remains a prominent challenge. Herein, we describe the asymmetric three-component 1,4-dialkylation of 1,3-enynes via dual photoredox and chromium catalysis to provide chiral allenols. This method features readily available starting materials, broad substrate scope, good functional group compatibility, high regioselectivity, and simultaneous control of axial and central chiralities. Mechanistic studies suggest that this reaction proceeds through a radical-involved redox-neutral pathway.
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