化学
立体中心
烯丙基重排
筑地反应
亲核细胞
钯
对映选择合成
立体化学
烯烃
对映体
烷基化
键裂
催化作用
位阻效应
选择性
药物化学
有机化学
作者
Zhong‐Sheng Nong,Xinran Chen,Pu‐Sheng Wang,Xin Hong,Liu‐Zhu Gong
标识
DOI:10.1002/anie.202312547
摘要
Enantioconvergent catalysis enables the conversion of racemic molecules into a single enantiomer in perfect yield and is considered an ideal approach for asymmetric synthesis. Despite remarkable advances in this field, enantioconvergent transformations of inert tertiary C-H bonds remain largely unexplored due to the high bond dissociation energy and the surrounding steric repulsion that pose unparalleled constraints on bond cleavage and formation. Here, we report an enantioconvergent Pd-catalyzed alkylation of racemic tertiary allylic C-H bonds of α-alkenes, providing a unique approach to access a broad range of enantioenriched γ,δ-unsaturated carbonyl compounds featuring quaternary carbon stereocenters. Mechanistic studies reveal that a stereoablative event occurs through the rate-limiting cleavage of tertiary allylic C-H bonds to generate σ-allyl-Pd species, and the achieved E/Z-selectivity of σ-allyl-Pd species effectively regulates the diastereoselectivity via a nucleophile coordination-enabled SN 2'-allylation pathway.
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