电渗析
砜
咪唑
芳基
乙醚
膜
离子交换膜
高分子化学
化学
硅氧烷
离子交换
离子
硅醚
有机化学
催化作用
聚合物
硅烷化
烷基
生物化学
作者
Zhiqiang Wu,Yu Xu,Junbin Liao,Qishun Zhang,Wenlong Ding,Yanqing Xu,Huimin Ruan,Jiangnan Shen,Congjie Gao
出处
期刊:Advanced membranes
[Elsevier]
日期:2025-01-01
卷期号:5: 100165-100165
被引量:1
标识
DOI:10.1016/j.advmem.2025.100165
摘要
A siloxane cross-linked, amino-long-chain modified poly(aryl ether sulfone) (PPH-Im SiO -NH 2 -X) anion exchange membrane (AEM) has been synthesized. The results demonstrated that the perm-selectivity ( ) of the PPH-Im SiO -NH 2 -X AEMs gradually increased with the increasing content of the amino chains and reached its maximum value of 30.17 in the PPH-Im SiO -NH 2 -50 AEM. The mechanism underlying the enhanced selectivity was systematically analyzed by combining SAXS characterization with physico-chemical property evaluations. Specifically: (i) The siloxane cross-linked network effectively suppressed membrane swelling (water uptake ≤ 8.81%, swelling ratio ≤ 3.03%), thereby ensuring the stability of the ion transport channels; (ii) The amino long-chain interacted physically with the cross-linked network to form entanglements, reducing the size of ion clusters to 0.332 nm and further narrowing the ion channels, which selectively inhibited the migration of SO 4 2− via a size-sieving effect. This study not only broadened the application scope of siloxane cross-linking agents in the field of ion exchange membranes (IEMs) but also provided a novel material design strategy for developing anion exchange membranes with high selectivity and excellent stability.
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