首页> 外文期刊>International journal of hydrogen energy >A new study on improving the physicochemical and electrochemical properties of SPEEK nanocomposite membranes for medium temperature proton exchange membrane fuel cells using different loading of zirconium oxide nanoparticles
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A new study on improving the physicochemical and electrochemical properties of SPEEK nanocomposite membranes for medium temperature proton exchange membrane fuel cells using different loading of zirconium oxide nanoparticles

机译:利用不同载量的氧化锆纳米粒子改善中温质子交换膜燃料电池用SPEEK纳米复合膜的理化和电化学性质的新研究

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摘要

The present research focused on investigation of physicochemical and electrochemical properties of proton exchange membranes based on sulfonated poly (ether ether ketone) (SPEEK) by using zirconia nanoparticles. Plain and nanocomposite SPEEK membranes with different loadings of microwave-induced gel combustion synthesized ZrO2 were fabricated. Sulfonation of polymer and nanoparticle production was confirmed by H NMR and XRD, respectively. Physical, chemical, and electrochemical properties of membranes were investigated by SEM, IEC, WU, EIS, tensile stress strain, TGA, Fenton, and hydrolytic stability tests. H NMR spectra represented a DS of 65% for the sulfonated polymer. The prepared nanocomposite membranes possess improved thermal and mechanical stability with higher hydrolytic stability and enhanced oxidative stability. In addition, nano composite membranes exhibited higher water uptake with lower IEC. The hygroscopic zirconia nanoparticles resulted higher proton conductivity of nanocomposite membranes at temperatures upper than 80 degrees C in comparison with pristine SPEEK membrane. All results showed the fabricated nanocomposite membranes have good physicochemical properties and promising future of the introduced approach for PEMFC applications. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究的重点是通过使用氧化锆纳米粒子研究基于磺化聚醚醚酮(SPEEK)的质子交换膜的理化和电化学性质。制备了不同载量的微波诱导的凝胶燃烧合成ZrO2的平面和纳米复合SPEEK膜。分别通过1 H NMR和XRD证实了聚合物的磺化作用和纳米颗粒的产生。通过SEM,IEC,WU,EIS,拉伸应力应变,TGA,Fenton和水解稳定性测试研究了膜的物理,化学和电化学性能。 1 H NMR光谱表示磺化聚合物的DS为65%。制备的纳米复合膜具有改善的热稳定性和机械稳定性,具有更高的水解稳定性和增强的氧化稳定性。另外,纳米复合膜表现出较高的吸水率和较低的IEC。与原始SPEEK膜相比,在高于80摄氏度的温度下,吸湿性氧化锆纳米粒子导致纳米复合膜的质子传导性更高。所有结果表明,所制备的纳米复合膜具有良好的理化性质,并且有望为PEMFC应用引入新方法。 (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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