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首页> 外文期刊>International journal of hydrogen energy >Nafion (R) nanocomposite membranes with enhanced properties at high temperature and low humidity environments
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Nafion (R) nanocomposite membranes with enhanced properties at high temperature and low humidity environments

机译:Nafion(R)纳米复合膜在高温和低湿环境下具有增强的性能

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Highly proton conductive nanocomposite membranes were synthesized by incorporating modified silica nanoparticles bearing different kinds of acid functionalities into Nafion. The short oligomeric corona, containing either phosphonate or sulfonate functional groups, leads to membranes with non-aggregated, discrete nanoparticles acting synergistically with the polymer. The new membranes exhibit significantly increased proton conductivity in all relative humidities and temperatures, however unprecedented behavior is observed at elevated temperatures (>80 degrees C) and/or low relative humidity. Pulse Field Gradient NMR measurements demonstrate that, in contrast to neat Nafion, which shows a precipitous decrease in the self-diffusion of water above 80 degrees C, the nanocomposite membranes were able to maintain high proton diffusivities pointing to adequate hydration levels for several hours at 130 degrees C without any external humidification. Furthermore, thermal and dynamic mechanical analysis reveal that the nanocomposite membranes retain their stiffness at much higher temperatures up to 200 degrees C compared to recast Nafion opening the way for high temperatures applications. The overall high ionic conductivity of the nanocomposite membranes especially above 80 degrees C coupled with their exceptional water retention capability and mechanical robustness makes them very attractive for potential use in fuel cell applications. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过将带有不同种类酸官能度的改性二氧化硅纳米粒子掺入Nafion中,合成了高质子传导性纳米复合膜。含有膦酸酯或磺酸酯官能团的短的低聚电晕,导致膜上带有非聚集的,离散的纳米颗粒,与聚合物协同作用。新膜在所有相对湿度和温度下均表现出显着提高的质子传导性,但是在升高的温度(> 80摄氏度)和/或较低的相对湿度下观察到了前所未有的行为。脉冲场梯度NMR测量表明,与纯净的Nafion相比,水在80摄氏度以上的水自扩散显着降低,纳米复合膜能够保持高质子扩散性,这表明在30℃下有足够的水合水平130摄氏度,无需任何外部加湿。此外,热力学和动态力学分析表明,与重铸的Nafion相比,纳米复合膜在高达200摄氏度的更高温度下仍能保持其刚性,从而为高温应用开辟了道路。纳米复合膜的总体高离子电导率,尤其是高于80摄氏度时,再加上其卓越的保水能力和机械强度,使其对于潜在的燃料电池应用非常有吸引力。 (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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