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Particle size and alloying effects of Pt-based alloy catalysts for fuel cell applications

机译:用于燃料电池的Pt基合金催化剂的粒度和合金化效果

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Carbon-supported Pt-based binary alloy electrocatalysts (Pt-Co, Pt-Cr and Pt-Ni) were prepared by incipient wetness method to investigate the origin of the enhanced activity of the oxygen reduction reaction in fuel cells. The composition of these catalysts was adjusted to 3:1 (Pt:M, atomic%, M = Co, Cr and Ni). Prepared catalysts were characterized by various physical and electrochemical techniques, that is, energy dispersive X-ray spectrometry (EDX), X-ray diffraction (XRD), transmission electron microscopy (TEM), X-ray absorption spectroscopy (XAS) and cyclic voltammetry (CV). XRD analysis showed that all prepared catalysts exhibited face-centered cubic structures and had smaller lattice parameters than Pt-alone catalyst. Pt-alone and Pt-based alloy catalysts showed increasing specific activities with decreasing surface area. This indicates that oxygen reduction on platinum surface is a structure-sensitive reaction. According to CV and X-ray absorption near-edge structure (XANES) results, the structure-sensitivity of Pt and Pt-based alloy catalysts for oxygen reduction seems associated with the adsorption strength of oxygen intermediates on the Pt surface. In addition, the Pt-based alloy catalysts showed significantly higher specific activities than Pt-alone catalysts with the same surface area. This phenomenon comes from the reduced Pt-Pt neighboring distance as the catalysts were alloyed. The reduced Pt-Pt neighboring distance is favorable for the adsorption of oxygen.
机译:通过初湿法制备了碳载Pt基二元合金电催化剂(Pt-Co,Pt-Cr和Pt-Ni),以研究燃料电池中氧还原反应活性增强的起源。将这些催化剂的组成调节至3∶1(Pt∶M,原子%,M = Co,Cr和Ni)。制备的催化剂通过各种物理和电化学技术进行表征,即能量色散X射线光谱法(EDX),X射线衍射(XRD),透射电子显微镜(TEM),X射线吸收光谱(XAS)和循环伏安法(简历)。 XRD分析表明,所有制备的催化剂均表现出面心立方结构,且晶格参数比单独使用Pt的催化剂小。单独的Pt和基于Pt的合金催化剂显示出比活性随表面积减小而增加。这表明铂表面上的氧还原是结构敏感的反应。根据CV和X射线吸收近边缘结构(XANES)的结果,Pt和Pt基合金催化剂对氧还原的结构敏感性似乎与氧中间体在Pt表面的吸附强度有关。此外,Pt基合金催化剂比具有相同表面积的单独Pt催化剂表现出明显更高的比活。这种现象是由于催化剂合金化后Pt-Pt邻近距离减小所致。减小的Pt-Pt相邻距离有利于氧的吸附。

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