钌
化学
催化作用
过电位
电化学
光化学
析氧
无机化学
速率决定步骤
组合化学
有机化学
物理化学
电极
作者
Fengshou Yu,David A. Poole,Simon Mathew,Ning Yan,Joeri Hessels,Nicole Orth,Ivana Ivanović‐Burmazović,Joost N. H. Reek
标识
DOI:10.1002/anie.201805244
摘要
Abstract Oxygen formation through water oxidation catalysis is a key reaction in the context of fuel generation from renewable energies. The number of homogeneous catalysts that catalyze water oxidation at high rate with low overpotential is limited. Ruthenium complexes can be particularly active, especially if they facilitate a dinuclear pathway for oxygen bond formation step. A supramolecular encapsulation strategy is reported that involves preorganization of dilute solutions (10 −5 m ) of ruthenium complexes to yield high local catalyst concentrations (up to 0.54 m ). The preorganization strategy enhances the water oxidation rate by two‐orders of magnitude to 125 s −1 , as it facilitates the diffusion‐controlled rate‐limiting dinuclear coupling step. Moreover, it modulates reaction rates, enabling comprehensive elucidation of electrocatalytic reaction mechanisms.
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