首页> 外文会议>International Conference on Smart Materials and Nanotechnology in Engineering >Nanocomposite Materials Based on SulfonatedPolyarylenethioethersulfone and Sulfonated Polybenzimidazole forProton Exchange Membrane Fuel Cell Applications
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Nanocomposite Materials Based on SulfonatedPolyarylenethioethersulfone and Sulfonated Polybenzimidazole forProton Exchange Membrane Fuel Cell Applications

机译:基于磺化聚氯甲酸甲砜和磺化聚苯和咪唑的纳米复合材料,普遍交换膜燃料电池应用

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Fabrication of novel nanocomposite membranes comprising a fully sulfonated polyarylenethioether sulfone (SPTES) and sulfonated poly(p-phenylene benzobisimidazole)(SPBI) and the evaluation of the membrane properties are described, The nanocomposite membrane was obtained via a solvent cast process in a mixture of DMAc and methanol as solvents. The nanocomposite membrane proton conductivity, as measured by four probe impedance spectroscopy, was found to increase with increase in the SPTES content in the nanocomposite. The highest proton conductivity obtained was ~80mS/cm at 65°C and 85 % relative humidity for the SPTES/SPBI 70/30 nanocomposite membrane which was considerably less than the 300 mS/cm for the pure SPTES membrane, but it was found that the swelling of the nanocomposite membranes was reduced due to the reduced water uptake of the nanocomposite membrane relative to SPIES. The morphology of the SPTES/SPBI nanocomposite membranes was examined by a combination of techniques, such as X-ray diffraction and scanning electron microscopy, to confirm the dispersion of SPBI in the nanocomposite. The membrane electrode assembly performance of the nanocomposite membranes was preliminary studied for H2/02 fuel cells applications.
机译:描述了新型纳米复合材料膜,其包含完全磺化的聚亚芳基乙醚砜(SPTE)和磺化聚(对亚苯基苯二异咪唑)(SPBI)和膜特性的评价,通过溶剂浇铸方法以含量的混合物获得纳米复合膜。 DMAC和甲醇作为溶剂。通过四种探针阻抗光谱法测量的纳米复合膜质子电导率随着纳米复合材料中的SPTES含量的增加而增加。得到的最高质子电导率为65℃和85%/ SPBI 70/30纳米复合膜的65℃和85%相对湿度,其对于纯SPTES膜的300ms / cm相当小,但发现它由于纳米复合膜相对于间谍的降低,纳米复合膜的溶胀减少。通过X射线衍射和扫描电子显微镜的技术组合检查SPTES / SPBI纳米复合膜的形态,以确认SPBI在纳米复合材料中的分散。纳米复合材料膜的膜电极组装性能对H2 / 02燃料电池应用进行了初步研究。

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