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磷对磷化钌碱性氢氧化电催化的作用

The Role of Phosphorus on Alkaline Hydrogen Oxidation Electrocatalysis for Ruthenium Phosphides.

作者信息

Jin Yiming, Fan Xinran, Cheng Wenjing, Zhou Yuheng, Xiao Li, Luo Wei

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei, 430072, P.R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 7;63(41):e202406888. doi: 10.1002/anie.202406888. Epub 2024 Sep 6.

Abstract

Transition metal/p-block compounds are regarded as the most essential materials for electrochemical energy converting systems involving various electrocatalysis. Understanding the role of p-block element on the interaction of key intermediates and interfacial water molecule orientation at the polarized catalyst-electrolyte interface during the electrocatalysis is important for rational designing advanced p-block modified metal electrocatalysts. Herein, taking a sequence of ruthenium phosphides (including RuP, RuP and RuP) as model catalysts, we establish a volcanic-relation between P-proportion and alkaline hydrogen oxidation reaction (HOR) activity. The dominant role of P for regulating hydroxyl binding energy is validated by active sites poisoning experiments, pH-dependent infection-point behavior, in situ surface enhanced infrared absorption spectroscopy, and density functional theory calculations, in which P could tailor the d-band structure of Ru, optimize the hydroxyl adsorption sites across the Ru-P moieties, thereby leading to improved proportion of strongly hydrogen-bonded water and facilitated proton-coupled electron transfer process, which are responsible for the enhanced alkaline HOR performance.

摘要

过渡金属/ p区化合物被认为是涉及各种电催化的电化学能量转换系统中最重要的材料。了解p区元素在电催化过程中在极化催化剂 - 电解质界面处关键中间体相互作用和界面水分子取向方面所起的作用,对于合理设计先进的p区改性金属电催化剂很重要。在此,以一系列磷化钌(包括RuP、RuP和RuP)作为模型催化剂,我们建立了P比例与碱性氢氧化反应(HOR)活性之间的火山关系。通过活性位点中毒实验、pH依赖性拐点行为、原位表面增强红外吸收光谱和密度泛函理论计算,验证了P对调节羟基结合能的主导作用,其中P可以调整Ru的d带结构,优化Ru - P部分上的羟基吸附位点,从而导致强氢键合水比例增加并促进质子耦合电子转移过程,这是碱性HOR性能增强的原因。

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