International Journal of Energy Research · 2018 · 22 citations · 30 references
EngineeringNafion MembraneIonic Liquid CationChemistryChemical EngineeringProton-exchange MembraneMaterials ScienceSolid-state IonicPhysical ChemistryPolymer MembranesMembrane BiologyMembrane PermeationPolymer MembraneElectrochemistryMembrane FormationNafion MembranesIonic ConductorDoping TimeNafion Membrane Proprieties
Nafion membranes were prepared by incorporating in the polymer matrix the 1-butyl-3-methylimidazolium (BMI+) ionic liquid cation at different doping levels. Increasing the doping time of the membranes with the ionic liquid results in increased incorporation of the BMI+ cation but a decrease in the bulk conductivity. The thermogravimetric analysis shows that the BMI+ cation incorporation increases the thermal stability of the membranes. The higher discharge efficiency of the fuel cell at 80°C was obtained by using Nafion membrane after 15 minutes of doping in the ionic liquid solution.
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