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Sulfonated-nanocomposites incorporated Polybenzimidazole based Polymer Electrolyte Membranes for Fuel Cells

机译:磺化 - 纳米复合材料掺入燃料电池的聚苯旁咪唑基聚合物电解质膜

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Polybenzimidazole based PEMs have become an important part of research into medium and high temperature PEMFCs. In order for this membrane to function at a high capacity, it must however be impregnated with a strong acid to increase its proton conductivity. The addition of this acid into the polymer leads to a decrease in mechanical stability of the polymer. An alternate way of circumventing this problem is through the incorporation of acid-functionalized titania nanocomposites. As such acid functionalized nanotubular material was incorporated into the ABPBI polymer matrix and the properties of the membrane were studied. IEC valued showed a marked increase in the availability of ions for transport in functionalized nanocomposites over unfunctionalised nanocomposites and lead to an increase in the conductivity by one order. Morphological as well as electrical, thermal and mechanical properties of these membranes were studied.
机译:基于聚苯苯基咪唑的PEM已成为研究中高温PEMFC的重要组成部分。为了使该膜以高容量起作用,然而,必须用强酸浸渍以增加其质子电导率。将该酸加入聚合物中导致聚合物的机械稳定性降低。通过掺入酸官能化二氧化钛纳米复合材料的替代方法是通过掺入酸官能化的纳米复合材料。随着这种酸官能化纳米管材料掺入ABPBI聚合物基质中,研究了膜的性质。 IEC值显示出在非官常纳米复合材料上以官能化纳米复合材料转运的离子的可用性增加,并导致电导率的增加。研究了这些膜的形态学以及电气,热和机械性能。

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