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Carbon Supports for Non-precious Metal Proton Exchange Membrane Fuel Cells

机译:碳支持Non-precious金属质子交换膜燃料电池

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摘要

The impact of micro- and mesoporosity of the carbon substrate on nitrogen content and activity of metal-nitrogen-carbon (MNC) catalysts is addressed via electrochemical, structural, and compositional techniques. A closed vessel containing the metal, nitrogen, and carbon precursors controls mass losses due to convection of high temperature byproducts. The resulting catalysts were characterized morphologically using nitrogen physisorption, coupled with DFT analysis to calculate pore size distributions. Bulk nitrogen content was observed using CHN combustion analysis, and the catalysts were characterized electrochemically by rotating ring-disk measurements. The influence of mesoporosity on nitrogen adsorption indicates the importance of precursor transport to potential active sites during pyrolysis.
机译:微和中孔隙的影响碳基质对氮和活动内容metal-nitrogen-carbon(跨国公司)的催化剂通过电化学处理,结构,和组合技术。包含金属、氮和碳前体控制质量损失对流高温的副产品。催化剂形态特征使用氮气物理吸附,再加上DFT分析计算孔隙大小分布。大量含氮量观察使用中文燃烧分析,催化剂电化学特征通过旋转ring-disk测量。中孔隙对氮吸附表示前体运输潜在的重要性活跃的站点在热解。

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