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首页> 外文期刊>International journal of hydrogen energy >Polybenzimidazole based nanocomposite membranes with enhanced proton conductivity for high temperature PEM fuel cells
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Polybenzimidazole based nanocomposite membranes with enhanced proton conductivity for high temperature PEM fuel cells

机译:用于高温PEM燃料电池的具有增强质子传导性的聚苯并咪唑基纳米复合膜

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摘要

In this study, phosphoric acid doped PBI nanocomposite membranes were prepared by dispersion of various amounts of inorganic nanoparticles in PBI polymer followed by phosphoric acid (H3PO4) doping for high temperature proton exchange membrane fuel cells (HT-PEMFC). All of the PBI composite membranes were cast from the same FBI polymer with the same molecular weight. Titanium dioxide (TiO2), silicon dioxide (SiO2) and inorganic proton conductor zirconium phosphate (ZrP) were used as inorganic fillers. The PBI based composite membranes were characterized in terms of their acid uptake and acid leaching properties, mechanical properties, chemical stabilities in N-N Dimethylacetamide (DMAc) and impedance analyses. Thermal gravimetric analysis confirmed the improved thermal stability of the PBI composite membranes. The existence of inorganic fillers was improved the acid retention capability. Electrochemical Impedance Spectroscopy (EIS) showed that the introduction of 5 wt. % SiO2 or 5 wt. % ZrP helps to increase proton conductivity. The composite membrane with TiO2 retained low conductivity values than pristine PBI and this is a result of its non-uniform membrane structure. The highest proton conductivity of 0.200 S/cm was obtained for PBI/ZrP composite membrane with the highest value of H3PO4 doping level. Nyquist plots are drawn for all the membranes at different temperatures and the plots showed good fit with Randel's circuit. As a result the experimental results suggested that the PBI based composite membranes may be a promising electrolyte used in HT-PEMFC. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,磷酸掺杂的PBI纳米复合膜是通过将多种无机纳米粒子分散在PBI聚合物中,然后掺杂磷酸(H3PO4)制成的用于高温质子交换膜燃料电池(HT-PEMFC)的方法制备的。所有PBI复合膜均由具有相同分子量的相同FBI聚合物浇铸而成。二氧化钛(TiO2),二氧化硅(SiO2)和无机质子导体磷酸锆(ZrP)被用作无机填料。基于PBI的复合膜的特征在于其酸吸收和酸浸特性,机械特性,N-N二甲基乙酰胺(DMAc)中的化学稳定性和阻抗分析。热重量分析证实了PBI复合膜的改进的热稳定性。无机填料的存在改善了酸保留能力。电化学阻抗谱法(EIS)显示,引入5 wt。 SiO2%或5 wt。 ZrP%有助于增加质子传导性。具有TiO2的复合膜比原始PBI保留的电导率值低,这是其膜结构不均匀的结果。 HBIPO4掺杂水平最高的PBI / ZrP复合膜的质子传导率最高,为0.200 S / cm。绘制了在不同温度下所有膜的奈奎斯特图,这些图显示了与Randel回路的良好拟合。结果,实验结果表明,基于PBI的复合膜可能是用于HT-PEMFC的有希望的电解质。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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