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揭示电双层对氢电催化动力学 pH 效应的起源:普遍的依赖于氢氧化物吸附的转折点行为。

Electric-Double-Layer Origin of the Kinetic pH Effect of Hydrogen Electrocatalysis Revealed by a Universal Hydroxide Adsorption-Dependent Inflection-Point Behavior.

机构信息

Hubei Key Laboratory of Electrochemical Power Sources, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.

CAS Key Laboratory of Design and Assembly of Functional Nanostructures, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China.

出版信息

J Am Chem Soc. 2023 Jun 7;145(22):12051-12058. doi: 10.1021/jacs.3c01164. Epub 2023 May 23.

Abstract

The mechanism of the kinetic pH effect in hydrogen electrocatalysis, that is, the order-of-magnitude kinetic gap between the hydrogen oxidation and evolution reactions (HOR/HER) in acidic and alkaline electrolytes, has been drastically explored but still intractable to reach a consensus, which severely limits the catalyst advance for alkaline-based hydrogen energy technologies. Herein, the HOR/HER kinetics on a number of precious metal-based electrocatalysts are evaluated in electrolytes with pHs spanning a wide range from 1 to 13. Instead of a monotonous decrease with pH as generally believed, we surprisingly find a universal inflection-point behavior in the pH dependence of HOR/HER kinetics on these catalysts, with both the inflection-point pH and the acid-alkaline activity gap depending on the hydroxide binding energy of the catalyst. Based on a triple-path microkinetic model, in which hydronium (HO) and water (HO) with and without formation of adsorbed hydroxide (OH), respectively, act as hydrogen donors participating in HOR/HER in various pHs, we reveal that the formation of OH should promote the HOR/HER kinetics mainly by improving the hydrogen-bond network in the electric double layer (EDL), rather than merely through modulating the energetics of surface reaction steps such as disassociation/formation of water. The present results and conclusions indicate that it is the interfacial EDL that dominates the substantial kinetic pH effects of hydrogen electrocatalysis.

摘要

动力学 pH 效应在析氢催化中的作用机制,即在酸性和碱性电解质中析氢反应 (HER) 和析氧反应 (HOR) 的动力学级差巨大,这一机制虽然已经得到了深入研究,但仍存在争议,尚未达成共识,这严重限制了碱性制氢能源技术中催化剂的发展。在此,作者在 pH 值范围从 1 到 13 的电解质中,评估了一系列贵金属基电催化剂上的 HOR/HER 动力学。令人惊讶的是,作者发现这些催化剂上的 HOR/HER 动力学与 pH 值的关系具有普遍的拐点行为,而不是像通常认为的那样随着 pH 值单调下降,拐点 pH 值和酸碱活性间隙取决于催化剂的氢氧化物结合能。基于三路径微观动力学模型,其中分别以水合氢离子 (HO) 和水 (HO) 以及吸附氢氧根离子 (OH) 的形式,在不同 pH 值下作为氢供体参与 HOR/HER,作者揭示了 OH 的形成主要通过改善双电层 (EDL) 中的氢键网络来促进 HOR/HER 动力学,而不仅仅是通过调节表面反应步骤(如水的离解/形成)的能态。本研究结果和结论表明,是界面 EDL 主导了析氢催化中显著的动力学 pH 效应。

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