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首页> 外文期刊>ACS Omega >Alkaline Stability of Anion-Conductive Ionomer Coated on a Carbon Surface
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Alkaline Stability of Anion-Conductive Ionomer Coated on a Carbon Surface

机译:碳表面包覆的阴离子导电离聚物的碱性稳定性

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Anion-exchange membrane fuel cells (AEMFCs) are promising technologies that allow the use of nonprecious metals as catalysts because the oxidation reduction reaction at the cathode occurs readily at the high pH of AEMFCs. However, the insufficient chemical stability of the anion-conductive materials in AEMFCs currently limits their development. We studied the chemical stability of the electrolyte in the catalyst layer of AEMFCs containing cationic dimethyl polybenzimidazole (mPBI). Although degradation was observed in an mPBI membrane under alkaline conditions, mPBI coated on a carbon support showed excellent alkaline stability. Because no glass transition temperature was observed for mPBI after coating on the support, the increase of chemical stability was probably associated with the decrease of polymer flexibility.
机译:阴离子交换膜燃料电池(AEMFC)是有前途的技术,该技术允许使用非贵金属作为催化剂,因为在AEMFC的高pH值下,阴极处的氧化还原反应容易发生。但是,AEMFC中阴离子导电材料的化学稳定性不足目前限制了它们的发展。我们研究了含有阳离子二甲基聚苯并咪唑(mPBI)的AEMFC催化剂层中电解质的化学稳定性。尽管在碱性条件下在mPBI膜中观察到降解,但是涂在碳载体上的mPBI显示出优异的碱性稳定性。因为在载体上涂布后未观察到mPBI的玻璃化转变温度,所以化学稳定性的提高可能与聚合物柔韧性的降低有关。

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