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首页> 外文期刊>International journal of hydrogen energy >Characterization of highly sulfonated PEEK based membrane for the fuel cell application
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Characterization of highly sulfonated PEEK based membrane for the fuel cell application

机译:用于燃料电池的高度磺化PEEK基膜的表征

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摘要

In this study, poly(bisphenol-A-ether ketone) (PBAEK) is synthesized via nucleophilic aromatic substitution poly condensation between bisphenol A and 4,4-difluorobenzophenone, and the synthesized polymers are sulfonated using chlorosulfuric acid and suitable synthesis conditions for the temperature and sulfonating reagent content. The sulfonation degree of polymer is calculated using element analyses. The prepared sulfonated polymers are characterized for potential fuel cell applications through determining their water uptake, proton conductivity, and thermal stability. The significant advantage of the synthesized sulfonated PBAEK (sPBAEK) is its better solubility relative to commercial PEEK in various solvents, because sPBAEK backbones contain bisphenol A. The water uptake of the membrane increases with increases in the sulfonation degree. The sPBAEK membrane exhibits increased proton conductivity compared with the PBAEK membrane at 100% relative humidity conditions. As the sulfonation degree increases, the proton conductivity increases due to the increasing content in the hydrophilic domain. This property allows the prepared membranes to be potential candidates for proton exchange membrane fuel cells. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,通过双酚A和4,4-二氟二苯甲酮之间的亲核芳族取代缩聚反应合成了聚(双酚-A-醚酮)(PBAEK),并使用氯硫酸和合适的合成条件将合成的聚合物磺化。和磺化剂含量。使用元素分析计算聚合物的磺化度。所制备的磺化聚合物通过确定其吸水率,质子传导率和热稳定性来表征潜在的燃料电池应用。合成的磺化PBAEK(sPBAEK)的显着优势是其相对于市售PEEK在各种溶剂中的溶解度更高,因为sPBAEK主链含有双酚A。膜的吸水率随磺化度的增加而增加。与100%相对湿度条件下的PBAEK膜相比,sPBAEK膜表现出更高的质子传导性。随着磺化度的增加,由于亲水域中含量的增加,质子电导率增加。该性质使得制备的膜成为质子交换膜燃料电池的潜在候选者。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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