用铂钯合金单晶表面解释甲酸氧化单晶Pd位点的机理。

IF 5.6 3区 材料科学 Q1 ELECTROCHEMISTRY
Gabriel Melle, Juan M. Feliu, Rosa M. Arán-Ais, Enrique Herrero
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引用次数: 0

摘要

甲酸氧化(FAOR)是直接甲酸燃料电池(dafcs)的关键反应,具有很高的理论效率和可持续能量转换的潜力。本研究研究了明确定义的Pt-Pd合金单晶表面上的FAOR机制,重点研究了Pd掺入对Pt(111)和Pt(100)电极电催化行为的影响。通过循环伏安法、高扫描速率伏安法和计时伏安法分析,探讨了Pd对反应机理的影响。结果表明,Pd的掺入通过改变起始电位、增加电流密度和降低低电位下CO的生成速率,显著改变了吸附行为、反应动力学和中毒率。在(111)表面上,Pd的存在增强了直接氧化途径,而在(100)表面上,Pd的存在显著降低了co介导的间接氧化途径,同时通过活性途径加速了反应,从而提高了催化性能。此外,还讨论了甲酸盐的吸附及其在氧化机理中的作用,以及对不同Pd组成下反应效率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Explaining the mechanism of formic acid oxidation on single crystal Pd sites by platinum-palladium alloy single-crystal surfaces
The oxidation of formic acid (FAOR) is a critical reaction for direct formic acid fuel cells (DFAFCs), offering high theoretical efficiency and potential for sustainable energy conversion. This study investigates the FAOR mechanism on well-defined Pt-Pd alloy single-crystal surfaces, focusing on the role of Pd incorporation in modifying the electrocatalytic behavior of Pt(111) and Pt(100) electrodes. Through cyclic voltammetry, high-scan-rate voltammetry, and chronoamperometric analysis, the effect of Pd in the reaction mechanism is explored. Results reveal that Pd incorporation significantly alters the adsorption behavior, reaction kinetics, and poisoning rates by shifting onset potentials, increasing current densities, and reducing CO formation rates at low potentials. On (111) surfaces, the presence of Pd enhances the direct oxidation pathway, while on (100) surfaces, it significantly reduces the indirect CO-mediated pathway, while accelerating the reaction through the active path, leading to improved catalytic performance. Furthermore, formate adsorption and its role in the oxidation mechanism are discussed, with implications for the reaction efficiency at various Pd compositions.
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来源期刊
Electrochimica Acta
Electrochimica Acta 工程技术-电化学
CiteScore
11.30
自引率
6.10%
发文量
1634
审稿时长
41 days
期刊介绍: Electrochimica Acta is an international journal. It is intended for the publication of both original work and reviews in the field of electrochemistry. Electrochemistry should be interpreted to mean any of the research fields covered by the Divisions of the International Society of Electrochemistry listed below, as well as emerging scientific domains covered by ISE New Topics Committee.
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