Publication | Open Access
Carbon-Supported Pt-SnO2 Catalysts for Oxygen Reduction Reaction over a Wide Temperature Range: Rotating Disk Electrode Study
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Citations
42
References
2021
Year
Materials ScienceOxygen Reduction ReactionChemical EngineeringCarbon-supported Pt-sno2 CatalystsEngineeringCatalytic ApplicationPolyol MethodSno2 ContentSingle-atom CatalystWide Temperature RangeCatalysisChemistryCatalyst PreparationBinary SystemElectrochemistry
Pt/C and Pt/x-SnO2/C catalysts (where x is mass content of SnO2) were synthesized using a polyol method. Their kinetic properties towards oxygen reduction reaction were studied by a rotating disk electrode (RDE) technique in a temperature range from 1 to 50 °C. The SnO2 content of catalyst samples was 5 and 10 wt.%. A quick evaluation of the catalyst activity, electrochemical behavior and average number of transferred electrons were performed using the RDE technique. It has been shown that the use of x-SnO2 (through modification of the carbon support) in a binary system together with Pt does not reduce the catalyst activity in the temperature range of 1–30 °C. The temperature rising up to 50 °C resulted in composite catalyst activity reduction at about 30%.
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