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通过钯催化远程取代实现配体控制的区域发散性烯丙基官能化反应。

Ligand-Dictated Regiodivergent Allylic Functionalizations via Palladium-Catalyzed Remote Substitution.

机构信息

CAS Key Laboratory of Synthetic Chemistry of Natural Substances, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Shanghai, 200032, China.

School of Chemistry and Materials Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou, 310024, China.

出版信息

Angew Chem Int Ed Engl. 2023 Jul 10;62(28):e202301556. doi: 10.1002/anie.202301556. Epub 2023 Apr 7.

Abstract

Different from classical allylic substitutions that require a vicinal leaving group, an olefin bearing a remote leaving group is scarcely viewed as a potential allylation substrate. Herein, we describe feasible protocols to achieve regiodivergent allylic C-H functionalizations via palladium-catalyzed remote substitution, which provides a novel strategy for the seldomly studied migratory Tsuji-Trost reaction. Dictated by a suitable ligand, a process that involved 4,3-hydrofunctionalization of the generated conjugated diene intermediate via metal walking is observed in generally >20 : 1 regioselectivity. Unexpectedly, a related 1,4-hydrofunctionalization pathway is found to be a major route with a newly synthesized electron-rich bisphosphine ligand, which challenges the conventional viewpoint on the potential regioselectivity of hydrofunctionalizations of linear internal conjugated dienes via η -substitution. A series of deuterium experiments and kinetic studies provide a preliminary insight into the potential catalytic cycle.

摘要

与需要相邻离去基团的经典烯丙基取代反应不同,带有远程离去基团的烯烃很少被视为潜在的烯丙基化底物。在此,我们描述了通过钯催化远程取代实现区域发散性烯丙基 C-H 官能化的可行方案,这为研究较少的迁移 Tsuji-Trost 反应提供了一种新策略。在合适配体的控制下,通过金属行走,观察到通过生成的共轭二烯中间体的 4,3-氢官能化的过程,其区域选择性通常>20:1。出乎意料的是,发现在使用新合成的富电子双膦配体时,存在相关的 1,4-氢官能化途径,这是主要途径,这对通过η-取代的线性内部共轭二烯的氢官能化的潜在区域选择性的传统观点提出了挑战。一系列氘实验和动力学研究提供了对潜在催化循环的初步了解。

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