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Polyimide/ionic liquid composite membranes for fuel cells operating at high temperatures

机译:用于高温工作的燃料电池的聚酰亚胺/离子液体复合膜

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摘要

Supported ionic liquid membranes (SILMs) were prepared by impregnating a porous Matrimid membrane with protic room-temperature ionic liquids (RTILs): 1-n-methylimidazolium dibutylphosphate ([C_1 im][DBP]), 1-n-butylimidazolium dibutylphosphate ([C_4im][DBP]) and 1-n-butylimidazolium bis(2-ethylhexyl)phosphate ([C_4im][BEHP]). After immersion of the porous Matrimid membrane in each RTIL, the prepared SILMs were composed of 53 ± 3% of RTIL phase. The control of the full impregnation of the porous Matrimid membrane by the RTILs was verified by FTIR spectroscopy. From the bubble point test, the SILMs displayed a good retention of their RTIL phase and, thus, showed a good stability against the increased pressure on one of the faces. The ionic conductivity of SILMs, used as electrolyte membranes for proton exchange membrane fuel cell (PEMFC) was measured by impedance spectroscopy. Unlike the Nafion, the conductivity of the SILMs still increases at high temperatures (> 80℃). The [C_4im][DBP]-impregnated SILM showed the best result in terms of conductivity (2.0 10~(-2) S/cm at 115℃). Moreover, all SILMs showed satisfactory stability since they retained a large amount of the RTIL phase in the membrane pores.
机译:通过用质子室温离子液体(RTIL)浸渍多孔Matrimid膜来制备支撑的离子液体膜(SILM):1-n-甲基咪唑二丁基磷酸酯([C_1 im] [DBP]),1-n-丁基咪唑二丁基磷酸酯([ C_4im] [DBP])和1-正丁基咪唑双(2-乙基己基)磷酸酯([C_4im] [BEHP])。在将多孔的Matrimid膜浸入每个RTIL中之后,制备的SILM由53±3%的RTIL相组成。通过FTIR光谱证实了RTIL对多孔基质胶膜的完全浸渍的控制。从起泡点测试来看,SILM表现出了良好的RTIL相保持性,因此,在面对其中一个面的压力增加时表现出了良好的稳定性。通过阻抗光谱法测量了用作质子交换膜燃料电池(PEMFC)电解质膜的SILM的离子电导率。与Nafion不同,SILM的电导率在高温(> 80℃)下仍会增加。 [C_4im] [DBP]浸渍的SILM在电导率方面(115℃下为2.0 10〜(-2)S / cm)表现出最好的结果。此外,所有SILM均显示出令人满意的稳定性,因为它们在膜孔中保留了大量RTIL相。

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