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基于功能化沸石咪唑酯骨架膜的离子控制以调整对目标离子的选择性

Ionic Control of Functional Zeolitic Imidazolate Framework-Based Membrane for Tailoring Selectivity toward Target Ions.

作者信息

Xia Lei, Zhao Yan, Zhang Xi, Qiu Yangbo, Shao Jiahui, Dewil Raf, der Bruggen Bart Van, Yang Xing

机构信息

Division of Soil and Water Management, KU Leuven, Kasteelpark Arenberg 20, 3001 Leuven, Belgium.

Department of Chemical Engineering, KU Leuven, Celestijnenlaan 200F, B-3001 Leuven, Belgium.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 2;14(8):11038-11049. doi: 10.1021/acsami.1c24876. Epub 2022 Feb 16.

Abstract

Ion exchange membranes with strong ionic separation performance have strategic importance for resource recovery and water purification, but the current state-of-the-art membranes suffer from inadequate ion selective transport for the target ions. This work proposes a new class of zeolitic imidazolate framework (ZIF)-based anion exchange membranes (named as S@ZIF-AMX) with suppressed multivalent anion mobility and enhanced target ion transport via an ionic control strategy under alternating current driven assembly. In electrodialysis with an initial concentration of 50 mM of NaBr, NaCl, NaSO, and NaPO (mixed feed) and a current density of 10 mA cm, the S@ZIF-AMX membrane demonstrated an excellent transport of the target ion (Cl) based on the synergy between the Cl regulated ZIF cavity and the electrostatic interaction with sulfonic groups. The separation efficiency and permselectivity of PO/Cl through S@ZIF-AMX largely increased to 83% and 32, respectively, compared to 42% and 4.0 of the pristine AMX membrane (a commercial anion exchange membrane), respectively. Furthermore, the separation between SO and Cl was also enhanced, the separation efficiency and permselectivity of SO/Cl increased from 11% and 1.4 to 45% and 4.3, respectively. In addition, the combined strategy developed in the S@ZIF-AMX membrane was proven effective in promoting Cl transport by shifting the separation equilibrium of the ion pair Br/Cl, which is known to be extremely challenging. This work provides a new design strategy toward pushing the limits of current ion exchange membranes for target ion separation in water, resource, and energy applications.

摘要

具有强大离子分离性能的离子交换膜对于资源回收和水净化具有战略重要性,但目前最先进的膜在目标离子的离子选择性传输方面存在不足。这项工作提出了一类新型的基于沸石咪唑酯骨架(ZIF)的阴离子交换膜(命名为S@ZIF-AMX),通过交流驱动组装下的离子控制策略,抑制多价阴离子迁移率并增强目标离子传输。在初始浓度为50 mM的NaBr、NaCl、NaSO和NaPO(混合进料)且电流密度为10 mA cm的电渗析中,基于Cl调节的ZIF空腔与磺酸基团的静电相互作用之间的协同作用,S@ZIF-AMX膜表现出优异的目标离子(Cl)传输性能。与原始AMX膜(一种商业阴离子交换膜)的PO/Cl分离效率和选择透过性分别为42%和4.0相比,通过S@ZIF-AMX的PO/Cl分离效率和选择透过性分别大幅提高到83%和32。此外,SO和Cl之间的分离也得到增强,SO/Cl的分离效率和选择透过性分别从11%和1.4提高到45%和4.3。此外,在S@ZIF-AMX膜中开发的联合策略被证明通过改变已知极具挑战性的离子对Br/Cl的分离平衡来有效促进Cl传输。这项工作为突破当前离子交换膜在水、资源和能源应用中目标离子分离的极限提供了一种新的设计策略。

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