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Testing fuel cell catalysts under more realistic reaction conditions: accelerated stress tests in a gas diffusion electrode setup

Shima Alinejad, Masanori Inaba, Johanna Schröder, Jia Du, Jonathan Quinson, Alessandro Zana, Matthias Arenz

2020Journal of Physics Energy73 citationsDOIOpen Access PDF

Abstract

Abstract Gas diffusion electrode (GDE) setups have very recently received increasing attention as a fast and straightforward tool for testing the oxygen reduction reaction (ORR) activity of surface area proton exchange membrane fuel cell (PEMFC) catalysts under more realistic reaction conditions. In the work presented here, we demonstrate that our recently introduced GDE setup is suitable for benchmarking the stability of PEMFC catalysts as well. Based on the obtained results, it is argued that the GDE setup offers inherent advantages for accelerated degradation tests (ADT) over classical three-electrode setups using liquid electrolytes. Instead of the solid–liquid electrolyte interface in classical electrochemical cells, in the GDE setup a realistic three-phase boundary of (humidified) reactant gas, proton exchange polymer (e.g. Nafion) and the electrocatalyst is formed. Therefore, the GDE setup not only allows accurate potential control but also independent control over the reactant atmosphere, humidity and temperature. In addition, the identical location transmission electron microscopy (IL-TEM) technique can easily be adopted into the setup, enabling a combination of benchmarking with mechanistic studies.

Topics & Concepts

Proton exchange membrane fuel cellGas diffusion electrodeElectrolyteElectrocatalystElectrodeNafionGaseous diffusionDiffusionElectrochemistryMaterials scienceCatalysisChemical engineeringChemistryThermodynamicsPhysical chemistryEngineeringPhysicsBiochemistryElectrocatalysts for Energy ConversionFuel Cells and Related MaterialsAdvanced battery technologies research
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