首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Rational design of sulfonated poly(ether ether ketone) grafted graphene oxide-based composites for proton exchange membranes with enhanced performance
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Rational design of sulfonated poly(ether ether ketone) grafted graphene oxide-based composites for proton exchange membranes with enhanced performance

机译:具有增强性能的质子交换膜的磺化聚(醚醚酮)接枝石墨烯基复合材料的合理设计

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Sulfonated graphene oxide (SGO) was synthesized by direct esterification reaction between graphene oxide (GO) and hydroxylated sulfonated poly(ether ether ketone) (SPEEK-OH) and then incorporated into sulfonated polyarylene ether nitrile (SPEN) to explore the effect of varying loading on performances of proton exchange membranes. It was found that SGO are uniformly dispersed and form perpendicular packing structure in matrix, triggering the formation of continuous and long-range proton transfer channels and effectively improving proton conductivity. Meanwhile, the water uptake, swelling ratio and methanol permeation are lowered to the corresponding composite PEM compared to pristine SPEN membrane. All of these are attributed to the formation of strong interfacial interaction between SPEN and SGO. As a result, the composite membranes possesses higher selectivity than pristine SPEN. Specially, the composite membrane contained 2 wt% SGO show the lowest swelling ratio at high temperature (just 13.77% at 80 degrees C) and the highest proton conductivity of 0.183 S.cm(-1) at 80 degrees C. Our investigation indicates the great potential of SGO in fabricating composite PEMs and also provides a new approach for the development of PEMs. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过石墨烯(GO)和羟基化磺化聚(Speek-OH)之间的直接酯化反应合成磺化的石墨烯氧化物(SGO),然后掺入磺化聚亚芳基醚丁腈(SPEN)中以探讨不同负载的效果对质子交换膜的性能进行研究。发现SgO在基质中均匀分散并形成垂直填充结构,触发连续和远程质子传递通道的形成,并有效地提高质子电导率。同时,与原始熔膜相比,水吸收,溶胀比和甲醇渗透率降低到相应的复合物PEM。所有这些都归因于培养和Sgo之间的强烈界面相互作用。结果,复合膜具有比原始Spen更高的选择性。特别地,复合膜含有2wt%Sgo,显示出高温下的最低溶胀比(在80℃下仅为13.77%),最高质子电导率为0.183磅(-1),在80摄氏度下。我们的调查表明了Sgo在制造复合PEM方面的潜力巨大潜力,并为PEM的开发提供了一种新方法。 (c)2018年elestvier有限公司保留所有权利。

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