Zheng Yu, Li ZhiChao, Yang Zixu, Shen Jianliang, Yang Chao, Wang Hui, Xu Kai, Cheng Lijuan, Hu Yihui, Zhao Yuxuan, Zhang Runnan, Jiang Zhongyi
Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.
Ningbo Key Laboratory of Green Petrochemical Carbon Emission Reduction Technology and Equipment, Zhejiang Institute of Tianjin University, Ningbo, Zhejiang, 315201, China.
Small. 2024 Nov;20(44):e2403300. doi: 10.1002/smll.202403300. Epub 2024 Jul 5.
Pore size sieving, Donnan exclusion, and their combined effects seriously affect ion separation of membrane processes. However, traditional polymer-based membranes face some challenges in precisely controlling both charge distribution and pore size on the membrane surface, which hinders the ion separation performance, such as heavy metal ion removal. Herein, the heterocharged covalent organic framework (COF) membrane is reported by assembling two kinds of ionic COF nanosheets with opposite charges and different pore sizes. By manipulating the stacking quantity and sequence of two kinds of nanosheets, the impact of membrane surface charge and pore size on the separation performance of monovalent and multivalent ions is investigated. For the separation of anions, the effect of pore size sieving is dominant, while for the separation of cations, the effect of Donnan exclusion is dominant. The heterocharged TpEBr/TpPa-SOH membrane with a positively charged upper layer and a negatively charged bottom layer exhibits excellent rejection of multivalent anions and cations (Ni, Cd, Cr, CrO , SeO , etc). The strategy provides not only high-performance COF membranes for ion separation but also an inspiration for the engineering of heterocharged membranes.
孔径筛分、唐南排斥及其综合效应严重影响膜过程中的离子分离。然而,传统的聚合物基膜在精确控制膜表面的电荷分布和孔径方面面临一些挑战,这阻碍了离子分离性能,如重金属离子去除。在此,通过组装两种带相反电荷且孔径不同的离子共价有机框架(COF)纳米片,报道了异电荷COF膜。通过控制两种纳米片的堆叠数量和顺序,研究了膜表面电荷和孔径对单价和多价离子分离性能的影响。对于阴离子的分离,孔径筛分效应占主导,而对于阳离子的分离,唐南排斥效应占主导。具有带正电上层和带负电底层的异电荷TpEBr/TpPa-SOH膜对多价阴离子和阳离子(镍、镉、铬、铬酸根、硒酸根等)表现出优异的截留率。该策略不仅为离子分离提供了高性能的COF膜,也为异电荷膜的工程设计提供了灵感。