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Pt-Decorated PdFe Nanoparticles as Methanol-Tolerant Oxygen Reduction Electrocatalyst

机译:Pt装饰的PdFe纳米颗粒作为耐甲醇的氧还原电催化剂

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摘要

The activity and selectivity of carbon-supported Pt-decorated PdFe nanoparticles in the oxygen reduction reaction (ORR) were investigated in the presence and absence of methanol. The Pt-decorated PdFe nanoparticles, which consist of a PdPt surface and a PdFe interior, were prepared by the galvanic reaction between PdFe/C alloy nanoparticles and PtCl4~(2-) in aqueous solution. The presence of a Pt-enriched surface after the replacement reaction was independently confirmed by several microstructural characterization techniques and cyclic volrammetry. The catalyst with such heterogeneous architecture is catalytically more active than a bulk PdFePt alloy catalyst with the same overall composition. The observed enhancements in catalyst performance can be attributed to the lattice strain effect between the shell and core components. The Pt-decorated PdFe (PdFe@PdPt/C) catalyst also compares favorably with a commercial Pt/C catalyst with four times as much Pt in terms of ORR activity, cost, and methanol tolerance.
机译:在存在和不存在甲醇的情况下,研究了碳载Pt修饰的PdFe纳米粒子在氧还原反应(ORR)中的活性和选择性。通过PdFe / C合金纳米粒子与PtCl4〜(2-)在水溶液中的电反应,制备了由PdPt表面和PdFe内部组成的Pt修饰的PdFe纳米粒子。通过几种微结构表征技术和循环伏安法独立地证实了置换反应后富含Pt的表面的存在。具有这种异质结构的催化剂比具有相同整体组成的块状PdFePt合金催化剂具有更高的催化活性。所观察到的催化剂性能的增强可以归因于壳和核组分之间的晶格应变效应。在ORR活性,成本和甲醇耐受性方面,装饰Pt的PdFe(PdFe @ PdPt / C)催化剂也比市售Pt / C催化剂具有四倍的Pt。

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