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Synthesis and Performance Evaluation of an S-POSS Based PBI Electrolyte for High Temperature PEM Fuel Cell Applications

机译:用于高温PEM燃料电池的S-POSS基PBI电解质的合成和性能评估

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In this paper, using patented nano-additive based polymer synthesis technology, a novel approach to the design and fabrication of high temperature proton exchange membrane (PEM) has been developed. The presence of sulfonated octaphenyl POSS (S-POSS) in a PBI-PA (polybenzimidazole-phosphoric acid) membrane results in a 40-50% increase in conductivity at 120-200°C relative to non-sulfonated silica or POSS control fillers at comparable weight percent filler loadings and PBI molecular masses, and also relative to unfilled PBI-PA membranes. In addition, the presence of S-POSS and silica both result in physical reinforcement of the membrane and increased its modulus and mechanical integrity, but only S-POSS offers the benefits of both increased conductivity and increased modulus. Isophthalic acid and 3,3'-diaminobenzidine (DAB) were polymerized in the presence of polyphosphoric acid (PPA) and S-POSS nanoadditive, and the degree of polymerization was monitored by viscosity and torque change measurements. Molecular mass was determined by inherent viscosity measurements of samples removed from the reaction solution. Membranes were prepared by casting the reaction solution and allowing PPA to hydrolyze to PA under ambient conditions. The membranes were characterized for acid content, in-plane conductivity, tensile modulus and shear modulus, and were roll-milled to achieve the desired thickness for membrane electrode assembly (MEA) fabrication.
机译:在本文中,使用获得专利的基于纳米添加剂的聚合物合成技术,开发了一种设计和制造高温质子交换膜(PEM)的新颖方法。 PBI-PA(聚苯并咪唑-磷酸)膜中存在磺化八苯基POSS(S-POSS),相对于非磺化二氧化硅或POSS对照填料,在120-200°C时电导率增加40-50%可比的填料装载量和PBI分子量的重量百分比,以及相对于未填充的PBI-PA膜的重量百分比。此外,S-POSS和二氧化硅的存在既会导致膜的物理增强,又会增加其模量和机械完整性,但是只有S-POSS才能提供增加电导率和增加模量的好处。在多磷酸(PPA)和S-POSS纳米添加剂的存在下,将间苯二甲酸和3,3'-二氨基联苯胺(DAB)聚合,并通过粘度和扭矩变化测量来监测聚合度。通过从反应溶液中取出的样品的比浓对数粘度测定来确定分子量。通过浇铸反应溶液并在环境条件下使PPA水解为PA来制备膜。表征膜的酸含量,面内电导率,拉伸模量和剪切模量,并进行辊磨以达到膜电极组件(MEA)制造所需的厚度。

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