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Thermal degradation of the support in carbon-supported platinum electrocatalysts for PEM fuel cells

机译:用于PEM燃料电池的碳载铂电催化剂中载体的热降解

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摘要

The cathode catalyst layer in proton exchange membrane (PEM) fuel cells can contain nanometer-sized platinum particles dispersed on a high surface area carbon.In order to assess support stability,samples of carbon-supported catalysts were held at elevated temperatures under dry air conditions.The samples were weighed at regular intervals.These tests showed that the platinum particles were able to catalyze the combustion of the carbon support at moderate temperatures (125-195 °C).As the temperature increased,the rate of carbon combustion increased.The amount of carbon that was lost after extended oven exposure at a constant temperature was shown to depend on both the temperature and platinum loading.A simple first-order kinetic model was able to describe the results.With further work on a range of different carbon supports,this work is expected to help develop more stable catalyst supports for PEM fuel cells.
机译:质子交换膜(PEM)燃料电池中的阴极催化剂层可以包含分散在高表面积碳上的纳米级铂颗粒。为了评估载体的稳定性,将碳载催化剂的样品在干燥的空气条件下保持在高温下定期对样品进行称重。这些测试表明,铂颗粒能够在中等温度(125-195°C)下催化碳载体的燃烧。随着温度的升高,碳的燃烧速率增加。结果表明,在恒温条件下长时间暴露于烤箱中后损失的碳量取决于温度和铂的负载量。简单的一阶动力学模型能够描述结果,并进一步研究了一系列不同的碳载体,这项工作有望帮助为PEM燃料电池开发更稳定的催化剂载体。

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