Sana Ben Jadi, Abdelqader El Guerraf, Mina El Fazdoune, Khadija Bahend, Maryem Oubella, El Arbi Bazzaoui, Rongguang Wang, Mohammed Bazzaoui
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Abstract
A novel approach is developed for the preparation of a membrane electrode assembly with low methanol crossover, designed for application in direct methanol fuel cells. This method involves a two-step process starting with the modification of a Nafion membrane through chemical oxidative polymerization of pyrrole, using FeCl3 as an oxidant. Subsequently, galvanostatic electrodeposition of several metals (copper, nickel and silver) was performed on the previously prepared composite membrane (polypyrrole–Nafion). Scanning electron microscopy was conducted to examine the growth evolution, morphology and distribution of the deposited polypyrrole and metals. Additionally, X-ray photoelectron analysis enabled for the identification of elemental composition and chemical states within the coating to confirm the growth evolution, morphology and oxide phases present in the coatings, as well as their structural characteristics. © 2024 Society of Chemical Industry.
电化学镀铜、镍和银的Nafion/PPy膜电极组装新方法的制备和表面表征
提出了一种制备低甲醇交叉膜电极组件的新方法,设计用于直接甲醇燃料电池。该方法包括两个步骤的过程,首先通过吡咯的化学氧化聚合对Nafion膜进行修饰,使用FeCl3作为氧化剂。随后,在先前制备的复合膜(聚吡咯- nafion)上进行了几种金属(铜、镍和银)的恒流电沉积。用扫描电子显微镜观察了沉积的聚吡咯和金属的生长演变、形态和分布。此外,x射线光电子分析能够识别涂层内的元素组成和化学状态,以确认涂层中存在的生长演变,形态和氧化相,以及它们的结构特征。©2024化学工业学会。
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