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首页> 外文期刊>Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films >Investigating the effects of proton exchange membrane fuel cell conditions on carbon supported platinum electrocatalyst composition and performance
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Investigating the effects of proton exchange membrane fuel cell conditions on carbon supported platinum electrocatalyst composition and performance

机译:研究质子交换膜燃料电池条件对碳载铂电催化剂组成和性能的影响

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摘要

Changes that carbon-supported platinum electrocatalysts undergo in a proton exchange membrane fuel cell environment were simulated by ex situ heat treatment of catalyst powder samples at 150 °C and 100% relative humidity. In order to study modifications that are introduced to chemistry, morphology, and performance of electrocatalysts, XPS, HREELS and three-electrode rotating disk electrode experiments were performed. Before heat treatment, graphitic content varied by 20% among samples with different types of carbon supports, with distinct differences between bulk and surface compositions within each sample. Following the aging protocol, the bulk and surface chemistry of the samples were similar, with graphite content increasing or remaining constant and Pt-carbide decreasing for all samples. From the correlation of changes in chemical composition and losses in performance of the electrocatalysts, we conclude that relative distribution of Pt particles on graphitic and amorphous carbon is as important for electrocatalytic activity as the absolute amount of graphitic carbon present.
机译:通过在150°C和100%相对湿度下对催化剂粉末样品进行异位热处理,模拟了碳负载的铂电催化剂在质子交换膜燃料电池环境中的变化。为了研究引入电催化剂的化学,形态和性能的修饰,进行了XPS,HREELS和三电极转盘电极实验。在进行热处理之前,在使用不同类型碳载体的样品中,石墨含量变化了20%,每个样品的体积和表面成分之间存在明显差异。按照老化方案,样品的体积和表面化学性质相似,所有样品的石墨含量均增加或保持恒定,而碳化铂含量则下降。从化学成分的变化与电催化剂性能损失的相关性,我们得出结论,石墨和无定形碳上Pt颗粒的相对分布对电催化活性的重要性与存在的石墨碳的绝对量一样重要。

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