对映选择合成
环氧化物
亲核细胞
对称化
立体中心
化学
动力学分辨率
催化作用
有机化学
组合化学
作者
Makoto Nakajima,Shunsuke Kotani,Masaharu Sugiura
出处
期刊:Organic Reactions
日期:2022-06-13
卷期号:: 655-902
标识
DOI:10.1002/0471264180.or110.02
摘要
Epoxide opening is a powerful strategy for accessing β‐functionalized alcohols from epoxides, which are readily available from alkenes. This review focuses on the desymmetrization of meso or centrosymmetric (prochiral) epoxides. The enantioselective nucleophilic opening of meso epoxides with various nucleophiles (including halogen‐, carbon‐, nitrogen‐, oxygen‐, sulfur‐, and selenium‐centered nucleophiles) enables the efficient synthesis of enantioenriched 1,2‐functionalized building blocks that bear contiguous stereogenic centers with good‐to‐excellent enantioselectivities. Moreover, chiral bases can accomplish the asymmetric α‐ or β‐deprotonation of meso epoxides, thereby facilitating various unique asymmetric transformations. This review provides a comprehensive overview of these enantioselective epoxide‐opening transformations using chiral reagents and catalysts, and covers the literature of enantioselective meso ‐epoxide opening up to April 2018. Ring‐opening polymerizations, enzymatic transformations, and immobilized catalysts are not discussed, nor are kinetic and dynamic kinetic resolutions of racemic epoxides.
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