化学
对映选择合成
催化作用
光催化
自由基离子
有机化学
组合化学
药物化学
光催化
离子
作者
Li-Li Zhang,Lianjie Li,Ning Wang,Hui Yu,Ze‐Peng Yang
摘要
Enantioselective alkyl-alkyl cross-coupling is a powerful yet challenging strategy for constructing three-dimensional molecular architectures, which are essential in fields such as organic chemistry and pharmaceutical chemistry. While radical-radical cross-coupling offers a promising approach, achieving control over both cross- and enantioselectivity between two distinct alkyl radicals remains a formidable challenge due to their transient nature. In this article, we introduce a practical platform that combines photoredox and chiral nickel catalysis to tame transient primary and secondary alkyl radicals under mild conditions. We also present a one-pot variant wherein the N-hydroxyphthalimide (NHP) ester is generated in situ, enabling the streamlined synthesis of enantioenriched products in a single step from commercially available carboxylic acids and easily accessible alcohols. The utility of this method is demonstrated by diverse transformations to valuable scaffolds and bioactive molecules. A comprehensive mechanistic study has clarified the involvement of a Ni(I)/Ni(II) cycle.
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