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Composition- and Morphology-Dependent Corrosion Stability of Ruthenium Oxide Materials

机译:组成和形态相关的氧化钌材料的腐蚀稳定性

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Ruthenium oxide materials were evaluated as possible non-carbon-based supports for fuel cell catalysts. The effects of composition and morphology of ruthenium oxide materials on the conductivity and corrosion stability in the gas-diffusion electrode (GDE) configuration were thoroughly investigated. The compositions of the bulk and surface of three ruthenium oxide materials, along with the surface area and surface morphology, were compared. We have found that all tested ruthenium oxide powders exhibited higher corrosion stability compared to carbon. Full conversion of RuO2 ; nH2O to the RuO2 phase by postreduction in a hydrogen atmosphere leads to improved conductivity and corrosion stability.
机译:氧化钌材料被评估为可能用于燃料电池催化剂的非碳基载体。彻底研究了氧化钌材料的组成和形态对气体扩散电极(GDE)构型中电导率和腐蚀稳定性的影响。比较了三种氧化钌材料的体积和表面组成,以及表面积和表面形态。我们发现,与碳相比,所有测试的氧化钌粉末均显示出更高的腐蚀稳定性。完全转化RuO2;通过在氢气气氛中进行后还原将nH2O转化为RuO2相可提高电导率和腐蚀稳定性。

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