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Stability of Perfluoro Bis(Sulfonyl)Imide-Based Ionomers in Fuel Cell Membranes and Electrodes

机译:燃料电池膜和电极中全氟双(磺酰基)酰亚胺基离聚物的稳定性

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New ionomers based on perfluoro bis(sulfonyl)imides have been made by 3M and show promise for use in fuel cell membranes and electrodes. These ionomers have exceptionally high proton conductivity that can result in improved performance especially at low relative humidities. Fundamental to the success of these ionomers is oxidative stability in the fuel cell operating environment. Accelerated open circuit voltage (OCV) hold tests have been used to evaluate the durability and chemical stability of perfluoro bis(sulfonyl)imide ionomers in both membrane and electrode applications. A multi-layer membrane technique was employed to recover degraded samples for FTIR analysis and effluent water was collected and analyzed using LC-MS. These experiments show evidence that the carbon-sulfur bonds in the imide group are subject to the same cleavage mechanism proposed for the traditional perfluoro sulfonic acid (PFSA) ionomers.
机译:基于全氟苯(磺酰基)酰亚胺的新离聚物已经通过3M制成,并显示在燃料电池膜和电极中使用的承诺。这些离聚物具有特别高的质子电导率,可以在低相对湿度下产生改善的性能。这些离聚物的成功的基本是燃料电池操作环境中的氧化稳定性。加速的开路电压(OCV)保持测试已被用于评估全氟双(磺酰基)酰亚胺离聚物在膜和电极应用中的耐久性和化学稳定性。使用多层膜技术来回收用于FTIR分析的降解样品,并使用LC-MS收集和分析流出水分。这些实验表明,酰亚胺组中的碳 - 硫键受到用于传统全氟磺酸(PFSA)离聚物的相同切割机制。

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