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Updated: Jan 11, 2026

Palladium N-Heterocyclic Carbene Complexes: Synthesis from Benzimidazolium Salts and Catalytic Activity in Carbon-carbon Bond-forming Reactions
Published on: July 30, 2017
Palladium-Catalyzed Site- and Enantiodifferentiating Allylic C-H Alkylation of Internal Alkenes
Zhi-Peng Shi1, Zi-Han Lin1, Ye-Xuan Xu1
1Hefei National Research Center for Physical Sciences at the Microscale and Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.
Abstract:
The site- and enantioselective transformation of allylic C-H bonds in ubiquitous internal alkenes represents a significant challenge in asymmetric synthesis. Introducing an enzyme-like chiral environment is a crucial strategy to achieve pro-R/S and site-differentiation of allylic C-H bonds, thereby circumventing the formation of complex regio- and stereoisomeric mixtures. In this work, we report a highly site- and enantiodifferentiating allylic C-H alkylation of internal alkenes through pocket-like chiral phosphoramidite-Pd catalysis. This method is effective for a wide spectrum of cyclic and acyclic internal alkenes. Dispersion interactions are highlighted as playing a pivotal role in stabilizing the enantiodifferentiating transition states of allylic C-H bond cleavage. Within an open pocket delineated by the segments of bulky phosphoramidite ligand, electronically and sterically similar allylic C-H bonds are discriminated. This process culminates in the generation of chiral σ-allylpalladium intermediates that rapidly engage in SN2'-allylation, installing the functional group precisely at the position of the initially cleaved prochiral hydrogen.
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