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◆ Journal of the American Chemical Society2026-03-10· Chemistry

Practical Rh–ZhangPhos Catalyzed Asymmetric Hydrogenation of Enamides: From Scalable Access to Mechanistic Insight

Hao Wang, Longxue Xiang, Yu Chen, Xu Tang, Jiahui Wu, Longsheng Zheng, Xiuxiu Li, Peiyuan Yu, Zhenghui Guan, Xumu Zhang

原始摘要(英文原文)· Original abstract
Herein, we report a simple, one-pot, scalable process for the preparation of a series of enamides, which were subsequently hydrogenated with high efficiency and excellent enantioselectivity to the corresponding chiral amides using the Rh-ZhangPhos catalyst. This methodology is practical and facilitates easy postreaction handling, with the hydrogenation providing nearly perfect stereoselectivity. DFT studies uncovered distinct rate-determining steps for competing enantiomeric pathways: migrational insertion for the major product and reductive elimination for the minor product, challenging conventional assumptions of a unified mechanistic origin. Noncovalent interaction analysis, particularly steric repulsion in the reductive elimination step, offers a theoretical rationale for long-standing empirical strategies in bisphosphine ligand design, bridging experiment, and computation in asymmetric hydrogenation.
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Practical Rh–ZhangPhos Catalyzed Asymmetric Hydrogenation of Enamides: From Scalable Access to Mechanistic Insight — 科研速览 Science Skim