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Selective Hydrogen Oxidation Catalyst for Reduced Startup/Shutdown Degradation in Low Temperature Fuel Cells
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2015
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Hydrogen Energy TechnologyIr-based ElectrocatalystsEngineeringEnergy ConversionChemistryHydrogen GenerationChemical EngineeringElectrolyzer CellHydrogen UtilizationHydrogen Production TechnologyHydrogenElectrochemical ProcessElectrochemistryOxygen Reduction ReactionFeasible AlternativesIr/c AnodesReduced Startup/shutdown DegradationHydrogen CombustionWater ElectrolysisElectrolysis Of Water
In this study, we are reporting for the first time clear evidence that Ir-based electrocatalysts are feasible alternatives to state-of-the-art Pt/C anode catalysts for PEMFC applications. While Ir/C has almost the same hydrogen oxidation activity as Pt/C, so that only minor voltage penalties are observed in H 2 /air performance curves (<20 mV at 1.5 A/cm geo 2 at 0.1 mg metal /cm 2 ), its oxygen reduction activity is substantially lower. Therefore, a replacement of Pt/C with Ir/C anodes would be expected to result in lower startup/shutdown (SUSD) damages. It will be shown that indeed 3-fold lower SUSD degradation rates are obtained with Ir/C compared to Pt/C anodes.