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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >The 3D Nanoscale Evolution of Platinum-Niobium Oxide Fuel Cell Catalysts via Identical Location Electron Tomography
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The 3D Nanoscale Evolution of Platinum-Niobium Oxide Fuel Cell Catalysts via Identical Location Electron Tomography

机译:通过相同位置电子断层扫描的铂 - 铌氧化铌燃料电池催化剂的3D纳米级演化

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摘要

Current state-of-the-art catalysts for polymer electrolyte membrane fuel cells, comprised of platinum nanoparticles on a high surface area carbon support, are susceptible to platinum dissolution and carbon support corrosion during operation. The use of transition metal oxides in the support material is proposed to stabilize the catalyst material by minimizing platinum dissolution and carbon corrosion. Here, the 3D structural changes are tracked for a hybrid Pt-Nb oxide on carbon catalyst before and after potential cycling utilizing identical location electron tomography. Pt dissolution is observed to varying degrees in both high and low Nb oxide content structures and appreciable carbon support corrosion in the high Nb oxide content structure but not in the low Nb oxide structure.
机译:用于聚合物电解质膜燃料电池的现有最先进的催化剂,其包含在高表面积碳载体上的铂纳米颗粒,在操作期间易于铂溶解和碳溶液腐蚀。 提出了在载体材料中使用过渡金属氧化物来通过最小化铂溶解和碳腐蚀来稳定催化剂材料。 这里,在利用相同位置电子断层扫描之前和之后跟踪在碳催化剂之前和之后的碳催化剂上的杂化Pt-Nb氧化物的3D结构变化。 在高NB氧化物含量结构和低Nb氧化物含量结构中,观察到Pt溶解,在高NB氧化物含量结构中,并且在高Nb氧化物含量结构中具有明显的碳支撑腐蚀,但不在低Nb氧化物结构中。

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