Polyimide/Ionic Liquid Composite Membranes for Middle and High Temperature Fuel Cell Application: Water Sorption Behavior and Proton Conductivity

Four water insoluble room-temperature protic ionic liquids (PILs) based on the N-alkylimidazolium cation with the alkyl chain length from 1 to 4 and bis(trifluoromethylsulfonyl)imide anion were synthesized and their chemical structure was confirmed by the H-1 NMR and F-19 NMR analysis. PILs were rev...

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Veröffentlicht in:Membranes (Basel) 2020-04, Vol.10 (5), p.82, Article 82
Hauptverfasser: Fatyeyeva, Kateryna, Rogalsky, Sergiy, Makhno, Stanislav, Tarasyuk, Oksana, Puente, Jorge Arturo Soto, Marais, Stephane
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Sprache:eng
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Zusammenfassung:Four water insoluble room-temperature protic ionic liquids (PILs) based on the N-alkylimidazolium cation with the alkyl chain length from 1 to 4 and bis(trifluoromethylsulfonyl)imide anion were synthesized and their chemical structure was confirmed by the H-1 NMR and F-19 NMR analysis. PILs were revealed to be thermally stable up to 360 and 400 degrees C. At the same time, the proton conductivity of PILs was found to be dependent mostly on the temperature and, to a less extent, on the type of the cation, i.e., the increase of the conductivity from similar to 3 x 10(-4) S/cm at 25 degrees C to 2 x 10(-2) S/cm at 150 degrees C was observed. The water vapour sorption capacity of PILs was evaluated as a function of relative humidity and the influence of the alkyl chain length on the phase behaviour in the PIL-water system was discussed. The composite polyimide/PILs membranes were prepared by the PIL immobilization in the porous polymer (Matrimid(R) 5218) film. The composite membranes showed a high level of proton conductivity (similar to 10(-3) S/cm) at elevated temperatures (up to 160 degrees C). The obtained results reveal that the elaborated composite polyimide/PIL membranes are promising candidates for the application as proton exchange membrane at middle and high temperatures.
ISSN:2077-0375
2077-0375
DOI:10.3390/membranes10050082