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Universal dependence of hydrogen oxidation and evolution reaction activity of platinum-group metals on pH and hydrogen binding energy

机译:氢氧化和铂族金属的析出反应活性对pH和氢结合能的普遍依赖性

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摘要

Understanding how pH affects the activity of hydrogen oxidation reaction (HOR) and hydrogen evolution reaction (HER) is key to developing active, stable, and affordable HOR/HER catalysts for hydroxide exchange membrane fuel cells and electrolyzers. A common linear correlation between hydrogen binding energy (HBE) and pH is observed for four supported platinum-group metal catalysts (Pt/C, Ir/C, Pd/C, and Rh/C) over a broad pH range (0 to 13), suggesting that the pH dependence of HBE is metal-independent. A universal correlation between exchange current density and HBE is also observed on the four metals, indicating that they may share the same elementary steps and rate-determining steps and that the HBE is the dominant descriptor for HOR/HER activities. The onset potential of CO stripping on the four metals decreases with pH, indicating a stronger OH adsorption, which provides evidence against the promoting effect of adsorbed OH on HOR/HER.
机译:了解pH如何影响氢氧化反应(HOR)和氢释放反应(HER)的活性是开发用于氢氧化物交换膜燃料电池和电解槽的活性,稳定和价格合理的HOR / HER催化剂的关键。在较宽的pH范围(0至13)范围内,四种负载的铂族金属催化剂(Pt / C,Ir / C,Pd / C和Rh / C)观察到氢键能(HBE)与pH之间存在线性关系。 ),表明HBE的pH依赖性与金属无关。在这四种金属上还观察到交换电流密度和HBE之间的普遍相关性,这表明它们可能共享相同的基本步骤和速率确定步骤,并且HBE是HOR / HER活性的主要描述符。随着pH值的升高,四种金属上CO汽提的起始电位降低,表明OH的吸附更强,这提供了OH吸附对HOR / HER促进作用的证据。

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