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Hierarchical Nanoporous Gold-Platinum with Heterogeneous Interfaces for Methanol Electrooxidation

机译:具有非均相界面的甲醇纳米电催化分层纳米多孔金-白金

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摘要

The electrocatalysts utilized as the prospective electrodes in fuel cells and high efficient energy conversion devices require both the interconnected channels for efficient electrolyte transportation and the superior catalytic activity with long service life. In this work, nanoporous gold with the rigid skeletons in three dimensions is partially decorated by porous platinum shell containing nanoscale interstitials, aiming to create the heterogeneous gold-platinum interfaces and facilitate the electrolyte transportation as well. In comparison with no catalytic activity of bare nanoporous gold, the catalytic activity of hierarchical nanoporous gold-platinum towards electrochemical oxidation of methanol increases with the loading level of platinum shells, resulting in the highest electrochemical area of 70.4 m2>·g−1 after the normalization by the mass of platinum. Heterogeneous gold-platinum interfaces affect the tolerance of the absorbed intermediate species because of the oxidization by the oxygenated species absorbed on the gold surface and the enhanced ion transportation within the porous platinum shell.
机译:用作燃料电池和高效能量转换装置中预期电极的电催化剂既需要互连的通道,以进行有效的电解质运输,又需要使用寿命长的优异催化活性。在这项工作中,具有三维刚性骨架的纳米多孔金被包含纳米级间隙的多孔铂壳部分装饰,目的是创建异质的金-铂界面并促进电解质的运输。与没有裸露的纳米多孔金的催化活性相比,分层的纳米多孔金-铂对甲醇的电化学氧化的催化活性随铂壳的负载量增加而增加,导致最大的电化学面积为70.4 m 2 g −1 。异质的金-铂界面会影响被吸收的中间物种的耐受性,这是因为被吸收在金表面的氧化物种氧化并增强了多孔铂壳内的离子传输。

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