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Heat treatment of carbon-based powders carrying platinum alloy catalysts for oxygen reduction: influence on corrosion resistance and particle size

机译:载有铂合金催化剂以减少氧气的碳基粉末的热处理:对耐腐蚀性和粒度的影响

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摘要

The influence of heat treatment of carbon-based powders carrying platinum and platinum-iron binary alloy catalysts for oxygen reduction is investigated. The catalyst powders are subjected to heating at various temperatures for a certain time. An accelerated ageing test (AAT) is used to evaluate the corrosion resistance and sintering resistance of each catalyst. The dissolution of the catalyst in the AAT filtrate is analysed with a spectrophotometer and provides a measure of the corrosion resistance. The particle size of catalyst powders before and after AAT is determined by X-ray diffraction and indicates the sintering resistance. Transmission electron microscopy and electron diffraction techniques are also employed as supplementary testing methods. So-called 'anchor effects' are proposed to explain the enhanced effect of iron in platinum-iron binary catalysts compared with catalysts that contain platinum alone.
机译:研究了载有铂和铂-铁二元合金催化剂的碳基粉末的热处理对氧还原的影响。催化剂粉末在各种温度下加热一定时间。加速老化试验(AAT)用于评估每种催化剂的耐腐蚀性和耐烧结性。用分光光度计分析催化剂在AAT滤液中的溶解度,并提供耐蚀性的量度。通过X射线衍射测定AAT之前和之后的催化剂粉末的粒径,并表示耐烧结性。透射电子显微镜和电子衍射技术也被用作补充测试方法。提出了所谓的“锚固效应”来解释与仅含铂的催化剂相比,铁在铂-铁二元催化剂中的增强作用。

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