烯丙基重排
动力学分辨率
亲核细胞
化学
催化作用
有机合成
组合化学
对映选择合成
有机化学
亲核取代
作者
Alexandre Lumbroso,Michael L. Cooke,Bernhard Breit
标识
DOI:10.1002/anie.201204579
摘要
Abstract Allylic alcohols represent an important and highly versatile class of chiral building blocks for organic synthesis. This Review summarizes the plethora of methods developed for the catalytic asymmetric synthesis of enantioenriched allylic alcohols. These include: dynamic kinetic resolution (DKR/DKAT), nucleophilic 1,2‐addition to carbonyl groups, allylic substitution, oxidation of CH bonds, the addition of O nucleophiles to π systems, reduction of unsaturated carbonyl compounds, and an alternative route from enantioenriched propargylic alcohols. Furthermore, these catalytic asymmetric processes are exemplified by their applications in the syntheses of complex molecules such as natural products and potential therapeutic agents.
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