Abstract
Relatively large O2 transport resistance at the ionomer and Pt interface has been thought to be responsible for the large performance loss at high power for a low Pt loading proton-exchange-membrane fuel cell. A facile method to characterize the interface in the fuel cell electrode is needed. In this study, the CO displacement method was explored on polycrystalline Pt and carbon-supported Pt nanoparticles. The displacement charge coverages were used to quantify the adsorption of perchlorate, sulfate, and perfluorosulfonic acid ionomer. The application of this method in a fuel cell electrode was demonstrated.
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CITATION STYLE
Garrick, T. R., Moylan, T. E., Yarlagadda, V., & Kongkanand, A. (2017). Characterizing Electrolyte and Platinum Interface in PEM Fuel Cells Using CO Displacement. Journal of The Electrochemical Society, 164(2), F60–F64. https://doi.org/10.1149/2.0551702jes
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