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Quaternized cellulose and graphene oxide crosslinked polyphenylene oxide based anion exchange membrane

机译:季铵化纤维素和氧化石墨烯交联的聚苯醚基阴离子交换膜

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摘要

Anion exchange membrane fuel cells (AEMFCs) have captivated vast interest due to non-platinum group metal catalysts and fuel flexibility. One of the major shortcomings of AEMFCs, however, is the lack of a stable and high anion conducting membrane. This study introduces a new strategy for fabrication of high conducting anion exchange membrane (AEM) using a hybrid nanocomposite of graphene oxide (GO), cellulose, and poly(phenylene oxide) (PPO), which are functionalized with 1,4-diazabicyclo[2.2.2]octane. The compositional ratio of GO/cellulose/PPO was optimized with respect to ionic conductivity, water uptake, swelling ratio, and mechanical properties. The membrane at GO/cellulose/PPO weight ratio of 1/1/100 displayed an impressive hydroxyl conductivity of ∼114 mS/cm at 25 °C and ∼215 mS/cm at 80 °C, which is considerably higher than the highest value reported. Further, the hybrid composite membranes were mechanically stable even when operating at high temperature (80 °C). The result indicates that the introduction of quaternized GO and cellulose into a polymer matrix is a promising approach for designing high performance AEMs.
机译:由于非铂族金属催化剂和燃料的灵活性,阴离子交换膜燃料电池(AEMFC)引起了人们极大的兴趣。然而,AEMFC的主要缺点之一是缺乏稳定且高阴离子传导膜。这项研究介绍了一种新的策略,该方法使用氧化石墨烯(GO),纤维素和聚苯醚(PPO)的纳米复合材料制造高导电阴离子交换膜(AEM),并通过1,4-二氮杂双环[ 2.2.2]辛烷。在离子电导率,吸水率,溶胀率和机械性能方面优化了GO /纤维素/ PPO的组成比。 GO /纤维素/ PPO重量比为1/1/100时的膜在25°C下显示出令人印象深刻的羟基电导率,约为114 mS / cm,在80°C下显示出约215 mS / cm的羟基电导率,大大高于最大值报告。此外,该杂化复合膜即使在高温(80℃)下操作也具有机械稳定性。结果表明,将季铵化GO和纤维素引入聚合物基体是设计高性能AEM的有前途的方法。

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