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Contribution of nanoclays to the barrier properties of a model proton exchange membrane for fuel cell application

机译:纳米粘土对用于燃料电池的模型质子交换膜的阻隔性能的贡献

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Direct methanol fuel cells (DMFCs) that use a proton exchange membrane (PEM) as electrolyte, is a promising alternative source of energy for the future. However, methanol crossover from the anodic side to the cathodic one is a major problem in DMFC. Proper dispersion of layered silicates within the fuel cell membrane has been proposed as a strategy for improving the barrier properties of the membrane. The validity of this approach has been tested in case of a model membrane consisting of phosphotungstic acid doped poly( vinyl alcohol). A solvent casting technique has been used, which allows the nanofiller to be delaminated by an ultrasonic pre-treatment, as confirmed by TEM and XRD analysis. The layered silicates have a favourable impact on the methanol permeability, whose the decrease overcompensates some loss in ionic conductivity.
机译:使用质子交换膜(PEM)作为电解质的直接甲醇燃料电池(DMFC)是未来有希望的替代能源。然而,甲醇从阳极侧到阴极侧的穿越是DMFC中的主要问题。已经提出了层状硅酸盐在燃料电池膜内的适当分散作为改善膜的阻隔性能的策略。在由磷钨酸掺杂的聚乙烯醇构成的模型膜的情况下,已经测试了这种方法的有效性。如TEM和XRD分析所证实的,已使用一种溶剂浇铸技术,该技术可使纳米填料通过超声预处理脱层。层状硅酸盐对甲醇的渗透性具有有利的影响,其降低会过度补偿离子电导率的一些损失。

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