膜
Nafion公司
离子键合
离子电导率
离子交换
化学工程
离子
无机化学
材料科学
化学
氢氧化物
电解质
降水
肿胀 的
共价键
氨
铸造
离子强度
离子运输机
氢氧化钠
箔法
离聚物
作者
Yuheng Zhou,Gongwei Wang,Lin Zhuang,Li Xiao
出处
期刊:
[American Chemical Society]
日期:2025-10-27
卷期号:3 (11): 4209-4217
被引量:1
标识
DOI:10.1021/acsaenm.5c00831
摘要
The properties of ion exchange membranes are largely dependent on their chemical composition and preparation methods. Traditional methods for ionic cross-linking, such as casting or decantation, often result in nonuniform membranes with defects, such as holes, due to precipitation issues. Additionally, regulating the degree of ionic cross-linking is challenging, leading to less research focus compared to covalent cross-linking. In this study, we introduce an ionic cross-linking method for preparing anion exchange membranes (AEMs). Our approach involves spraying quaternary ammonia poly( N -methylpiperidine- co - p -terphenyl) (QAPPT) and Nafion solution from separate ports onto an ultrasonic atomization surface, enabling ionic cross-linking when sprayed onto a heated aluminum foil substrate. This method produces complete and uniform membranes with enhanced properties, including improved swelling degree (SD), water uptake (WU) and tensile strength. Notably, the 5% Nafion ion-cross-linked membrane exhibits ionic selectivity, with hydroxide ion conductivity of 25% faster than carbonate ions at 80 °C. The versatility of this multiport spraying technique allows for the preparation of ionic cross-linking membranes using various anion and cation exchange polymers, offering significant potential for advancing membrane material development.
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