Deciphering the Synchronization of Alternating Current Frequency with the Nickel Catalytic Cycle in Selective C–N Cross-Coupling
作者:Atanu Hazra, Marisa Organiscak, Long Luo · 发表于:Journal of the American Chemical Society · 年份:2025 · DOI:10.1021/jacs.5c13155 · 被引用次数:8 · 研究领域:Catalytic Cross-Coupling Reactions、Radical Photochemical Reactions、Catalytic C–H Functionalization Methods
Alternating current (AC) electrolysis offers a promising strategy for modulating redox states in metal-catalyzed reactions, yet its mechanistic basis remains poorly understood. Here, we uncover how AC frequency synchronizes with key steps in a Ni-catalyzed cross-coupling cycle to control product selectivity between C–N and C–C coupling. We show that optimal C–N selectivity arises from minimizing the exposure of a key intermediate, Ni II (Ar)Br, to reducing conditions that otherwise promote off-cycle Ni I species and undesired C–C homocoupling. By developing a simple cyclic voltammetry-based method, we accurately predict the optimal AC frequency across diverse aryl bromides and amines, eliminating the need for time-consuming trial-and-error reaction optimization. The predicted values align well with experimentally determined frequencies, validating the approach. This work establishes a mechanistic foundation for integrating AC waveform control into metal catalysis and highlights its potential for advancing selective electrochemical transformations in synthetic and medicinal chemistry.