化学
钴新统
氢化物
铱
电合成
催化作用
质子化
电催化剂
转移加氢
无机化学
过渡金属
组合化学
有机化学
金属
电化学
电极
钌
离子
物理化学
二茂铁
作者
Daniel P. Marron,Conor M. Galvin,Julia M. Dressel,Robert M. Waymouth
摘要
The selective electrocatalytic hydrogenation of organics with transition metal hydrides is a promising strategy for electrosynthesis and energy storage. We report the electrocatalytic hydrogenation of acetone with a cyclopentadienone-iridium complex in a tandem electrocatalytic cycle with a cobaltocene mediator. The reductive protonation of cobaltocenium with mild acids generates (C 5 H 5 )Co I (C 5 H 6 ) (CpCo I (CpH)), which functions as an electrocatalytic hydride mediator to deliver a hydride to cationic Ir(III) without generating hydrogen. Electrocatalytic hydride transfer by CpCo I (CpH) to a cationic Ir species leads to the efficient (Faradaic efficiency > 90%) electrohydrogenation of acetone, a valuable hydrogenation target as a liquid organic hydrogen carrier (LOHC). Hydride–transfer mediation presents a powerful strategy to generate metal hydrides that are inaccessible by stepwise electron/proton transfer.
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