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

机译:用于中高温燃料电池的聚酰亚胺/离子液体复合膜:吸水性能和质子电导率

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摘要

Four water insoluble room-temperature protic ionic liquids (PILs) based on the -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 NMR and F NMR analysis. PILs were revealed to be thermally stable up to 360 and 400 °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 ~3 × 10 S/cm at 25 °C to 2 × 10 S/cm at 150 °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 5218) film. The composite membranes showed a high level of proton conductivity (~10 S/cm) at elevated temperatures (up to 160 °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.
机译:合成了四种基于烷基链长为1至4的-烷基咪唑鎓阳离子和双(三氟甲基磺酰基)酰亚胺阴离子的水不溶性室温质子离子液体(PIL),并通过H NMR和F NMR分析证实了其化学结构。 。揭示了PIL在高达360和400°C的温度下具有热稳定性。同时,发现PILs的质子电导率主要取决于温度,而在较小程度上取决于阳离子的类型,即电导率在25°C时从〜3×10 S / cm增加。在150°C下观察到2到10×10 S / cm。评估了PIL的水蒸气吸附能力是相对湿度的函数,并讨论了烷基链长对PIL-水系统中相行为的影响。通过将PIL固定在多孔聚合物(Matrimid 5218)膜中来制备聚酰亚胺/ PILs复合膜。复合膜在高温(高达160°C)下表现出高水平的质子传导性(〜10 S / cm)。获得的结果表明,精心制作的复合聚酰亚胺/ PIL膜有望在中高温下用作质子交换膜。

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