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◆ Journal of the American Chemical Society2025-12-10· Chemistry

Catalytic Enantioselective Cross-Nucleophile Coupling via Valence Tautomerism

Zhaofei Zhang, Arman Khosravi, Jagrut Shah, Kevin P. Quirion, Stephen C. Yachuw, Andrew T. Poore, Shiliang Tian, Peng Liu, Ming‐Yu Ngai

原始摘要(英文原文)· Original abstract
Valence tautomerism, traditionally underexplored in asymmetric catalysis compared to the more familiar two-electron prototropic tautomerism like keto-enol, presents a promising avenue for novel chemical transformations. In this study, we harness one-electron valence tautomerism through a dual photoredox/nickel-catalyzed system to facilitate oxidant-free, enantioselective cross-nucleophile coupling (CNC). This method efficiently couples a diverse range of β-keto esters and amides with silyl enol ethers and allyl silanes, producing coupling products that feature a quaternary stereocenter with high stereocontrol. The reaction demonstrates broad tolerance for different functional groups and molecular architectures. Mechanistic investigations, including Stern-Volmer quenching, cyclic voltammetry, electron paramagnetic resonance (EPR), radical trapping, and density functional theory (DFT) calculations, corroborate a radical mechanism involving valence tautomerism. We anticipate that this mechanistic insight will inspire the discovery of new chemical transformations and provide a framework for describing key steps in future catalytic reactions.
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