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具有离子可交联侧链的高性能单价选择性阳离子交换膜:酸性基团的影响。

High-Performance Monovalent Selective Cation Exchange Membranes with Ionically Cross-Linkable Side Chains: Effect of the Acidic Groups.

作者信息

Yang Peng-Xu, Wang Jing, Liu Hui-Li, Guo Zhi-Yuan, Huang Zhi-Hui, Zhang Pan-Pan, Ji Zhi-Yong

机构信息

Engineering Research Center of Seawater Utilization Technology of Ministry of Education, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300130, China.

Hebei Collaborative Innovation Center of Modern Marine Chemical Technology, Tianjin 300130, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 10;16(27):35576-35587. doi: 10.1021/acsami.4c07085. Epub 2024 Jun 28.

Abstract

Inspired by the charge-governed protein channels located in the cell membrane, a series of polyether ether ketone-based polymers with side chains containing ionically cross-linkable quaternary ammonium groups and acidic groups have been designed and synthesized to prepare monovalent cation-selective membranes (MCEMs). Three acidic groups (sulfonic acid, carboxylic acid, and phenolic hydroxyl) with different acid dissociation constant (p) were selected to form the ionic cross-linking structure with quaternary ammonium groups in the membranes. The ionic cross-linking induced the nanophase separation and constructed ionic channels, which resulted in excellent mechanical performance and high cation fluxes. Interesting, the cation flux of membranes increased as the ionization of acidic groups increase, but the selectivity of MCEMs did not follow the same trend, which was mainly dependent on the affinity between the functional groups and the cations. Carboxyl group-containing MCEMs exhibited the best selectivity (9.01 for Li/Mg), which was higher than that of the commercial monovalent cation-selective CIMS membrane. Therefore, it is possible to prepare stable MCEMs through a simple process using ionically cross-linkable polymers, and tuning acidic groups in the membranes provided an attractive approach to improving the cation flux and selectivity of MCEMs.

摘要

受位于细胞膜中的电荷调控蛋白通道的启发,设计并合成了一系列基于聚醚醚酮的聚合物,其侧链含有可离子交联的季铵基团和酸性基团,以制备单价阳离子选择性膜(MCEMs)。选择了具有不同酸解离常数(p)的三种酸性基团(磺酸、羧酸和酚羟基),在膜中与季铵基团形成离子交联结构。离子交联诱导了纳米相分离并构建了离子通道,从而产生了优异的机械性能和高阳离子通量。有趣的是,膜的阳离子通量随着酸性基团的电离增加而增加,但MCEMs的选择性并不遵循相同的趋势,这主要取决于官能团与阳离子之间的亲和力。含羧基的MCEMs表现出最佳的选择性(Li/Mg为9.01),高于商业单价阳离子选择性CIMS膜。因此,通过使用可离子交联聚合物的简单工艺制备稳定的MCEMs是可能的,并且调节膜中的酸性基团为提高MCEMs的阳离子通量和选择性提供了一种有吸引力的方法。

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