ACS Applied Energy Materials · 2019 · 18 citations · 36 references
Materials ScienceRadiation Grafted MembranesChemical EngineeringCatalytic MembraneEngineeringElectrolyzer CellMembrane TechnologyPolymer MembraneVinylimidazole Monomer CombinationsExcellent Thermal StabilityFuel Cell TestsProton-exchange MembraneMetal-salt Enhanced GraftingProton Exchange MembranesHybrid MaterialsElectrochemistry
Proton exchange membranes were prepared and characterized for utilization in high-temperature proton exchange membrane fuel cells, HT-PEMFCs. 1-vinylimidazole (1-VIm) and 4-vinylpyridine (4VP) monomers were simultaneously grafted onto pre-irradiated ETFE (ethylene-co-tetrafluoroethylene) films which were prepared using γ-rays with a dose of 100 kGy, as a robust substrate to prepare acid–base composite membranes. The grafting reaction was performed at 60 °C for 24 h followed by protonation via phosphoric acid doping in the subsequent step. The effect of adding ferrous salts as promoters in grafting was investigated by characterization of resultant membranes via thermal gravimetric analysis and mechanical tests. The fuel cell tests were conducted under different relative humidities (RHs) and applied temperatures. Membranes prepared with salt addition exhibited superior proton conductivities. Results including up to 80 mS cm–1 conductivity at 110 °C in 60% RH and excellent thermal stability, even at 300 °C, suggest these membranes are promising for HT-PEMFC applications.
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Fuel Cells - Fundamentals and Applications
Linda Carrette, K. Andreas Friedrich, Ulrich Stimming · Fuel Cells · 2001 · 1.5K citations · Full text
Electrical Engineering, Chemical Engineering, Engineering +6