以含氮磷离子液体修饰的聚对苯二甲酸乙二醇酯轨迹腐蚀膜为基础的新型质子导电材料

Y. Titova, A. Chesnokova, A. Sukhanov, N. Ivanov
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引用次数: 0

摘要

新型氢燃料电池膜材料的开发是一项很有前途的环保技术,是一个相关的研究课题。在这项工作中,我们提出了一种从工业聚对苯二甲酸乙二醇酯(PET)介电轨迹蚀刻膜制造质子导电膜的方法。采用含N, p的离子液体作为改性剂,直接在PET膜孔中进行聚合。离子液体是由俄罗斯科学院西伯利亚分院A.E.法沃斯基化学研究所开发的Trofimov-Gusarova反应,利用单质磷定向合成有机磷化合物的新方法获得的。通过核磁共振和红外光谱对离子液体的性质进行了表征。将所获得的含N, p离子液体应用于PET膜上,得到了一种具有质子导电膜所需机械参数的材料。在353 K下,新型质子导电材料的质子电导率高达77.76 mS·cm-1。所获得的质子导电膜有望应用于氢燃料电池,从而有助于开发有效的替代能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel proton-conducting materials based on a polyethylene terephthalate track-etched membrane modified with an N, P-containing ionic liquid
The development of novel membrane materials for hydrogen fuel cells, a promising environmentally friendly technology, represents a relevant research task. In this work, we propose an approach to creating proton-conducting membranes from an industrial polyethylene terephthalate (PET) dielectric track-etched film. An N, P-containing ionic liquid was used as a modifying agent, whose polymerization was carried out directly in the PET membrane pores. The ionic liquid was obtained using a novel approach to the directed synthesis of organophosphorus compounds from elemental phosphorus via the Trofimov-Gusarova reaction developed at the A.E. Favorsky Institute of Chemistry of the Siberian Branch of the Russian Academy of Sciences. The ionic liquid properties were characterized by NMR and IR spectroscopy. The application of the obtained N, P-containing ionic liquid onto a PET membrane was shown to yield a material exhibiting the required mechanical parameters for operation as proton-conducting membranes. The novel proton-conducting materials demonstrate a high proton conductivity of 77.76 mS·cm-1 at 353 K. The obtained proton-conducting membranes seem promising for application in hydrogen fuel cells, thus contributing to the development of effective alternative energy sources.
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