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Autothermal Polarization of Membrane Electrode Assemblies – Effect of the Pt Content of the Catalyst and the Thickness of Fuel Cell Catalyst Layer

Balázs Kereszty, Gábor P. Szíjjártó, Emese Lévai, Luka Szerb, Richárd Kunstár, András Tompos
August 18, 2026
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Research Abstract & Technology Focus

Laboratory-scale fuel cell testers typically regulate cell temperature via endplate heating cartridges. In practical stack applications, however, temperature control is achieved by cooling systems, making uniform temperature distribution a critical factor in system design and scale-up. To investigate these thermal effects under realistic conditions, autothermal activation and autothermal polarization experiments were conducted. Membrane electrode assemblies (MEAs) were polarized according to the New European Driving Cycle protocol, while galvanostatic electrochemical impedance spectroscopy (GEIS) measurements were performed in parallel to determine R1, R2, and C2 parameters in situ. Three MEA configurations differing catalyst layers were tested: C-60-Pt, C-40-Pt, and C-60-Pt (0.13 mg Pt/cm2), all with symmetrical Pt loadings. A custom-developed spray-gun robot was used for gas diffusion electrode fabrication. Among the samples, the C-40-Pt MEA demonstrated a pronounced break-in effect after 4 h of autothermal activation and achieved the highest current density. While the low-Pt MEA exhibited the lowest performance, it also showed the largest temperature rise during autothermal polarization. Impedance data confirmed that despite similar series resistance, the C-40-Pt MEA had lower internal resistance, while the more porous C-60-Pt showed increased R1. More consistent curve shapes during autothermal conditions compared to fixed-temperature GEIS indicate that temperature adaptability enhances measurement reproducibility.
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What is the core focus of the research titled 'Autothermal Polarization of Membrane Electrode Assemblies – Effect of the Pt Content of the Catalyst and the Thickness of Fuel Cell Catalyst Layer'?

This literature focuses on: Laboratory-scale fuel cell testers typically regulate cell temperature via endplate heating cartridges. In practical stack applications, however, temperature control is achieved by cooling systems, making uniform temperature distribution a critica...

Are there commercial applications of 'Autothermal Polarization of Membrane Electrode Assemblies – Effect of the Pt Content of the Catalyst and the Thickness of Fuel Cell Catalyst Layer' in market news publications?

Yes, highly correlated activity was mapped. An entry titled 'Bulk polarization fields and interfacial electron sink in MXene-modified iodine-doped Bi4Ti3O12 enhance piezocatalytic H2O2 generation' discusses this: Efforts to generate H2O2 through mechanical activation are hampered by poor charge control and low efficiency. Herein, a tailored catalyst strength...

What other academic literature is closely related to 'Autothermal Polarization of Membrane Electrode Assemblies – Effect of the Pt Content of the Catalyst and the Thickness of Fuel Cell Catalyst Layer'?

Yes, highly correlated activity was mapped. An entry titled 'Enhanced Photocatalytic Efficiency Through Oxygen Vacancy‐Driven Molecular Epitaxial Growth of Metal–Organic Frameworks on BiVO 4' discusses this: Abstract Efficient charge separation at the semiconductor/cocatalyst interface is crucial for high‐performan...

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