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Performance and Durability of Chalcogen-Modified Ruthenium Catalysts for Oxygen Reduction: Hydrogen-Air MEA and RRDE Studies

机译:降氧化性氧化钌催化剂的性能和耐氧化钌催化剂:氢气MEA和RRDE研究

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The performance of a Se/Ru catalyst for the oxygen reduction reaction (ORR) has been evaluated by RRDE measurements and in fuel cell tests. The catalyst was prepared by adding aqueous SeO_2 to metallic Ru black, then bubbling H_2 through the mixture. The Tafel slope (80±5 mV decade~(-1) at low η) and activation energy (25±3 kJ mol~(-1) at η = 0.40 V) indicate that this Se/Ru catalyst behaves mechanistically in a similar way to pure noble metal catalysts (e.g., Pt and Ru). In comparison to other Se/Ru catalysts, the sample shows higher activity, presumably due to the greater number of Ru sites uncovered by Se available for reaction with oxygen, as estimated by CO stripping. Fuel cell tests demonstrate that Se/Ru is superior to Ru black at low current densities, thanks to the inhibiting effect of Se on the oxidation of Ru to inactive surface species. The stability of Se under aqueous and fuel cell conditions is also discussed.
机译:通过RRDE测量和燃料电池试验评估了SE / Ru催化剂的SE / Ru催化剂的性能。通过将SEO_2水溶液加入金属Ru黑色,然后通过混合物鼓泡H_2来制备催化剂。 Tafel斜率(低80±5mV十年〜(-1),η= 0.40 v的激活能量(25±3kJ mol〜(-1))表明该SE / Ru催化剂在类似的情况下机械地表现纯净贵金属催化剂的方式(例如,Pt和Ru)。与其他SE / Ru催化剂相比,样品显示出更高的活性,可能是由于通过CO汽提的估计,通过SE被覆盖的RU位点的数量较多的RU位点。由于SE对ru氧化至无活性表面物质的抑制作用,燃料电池试验表明SE / Ru在低电流密度下以低电流密度为Ru黑色。还讨论了SE在水性和燃料电池条件下的稳定性。

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