Wang Jingfeng, Zhang Xiaoming, Shen Ruichen, Yuan Quan, Yang Yanbing
College of Chemistry and Molecular Sciences, Key Laboratory of Biomedical Polymers of Ministry of Education, Institute of Molecular Medicine, Renmin Hospital of Wuhan University, School of Microelectronics, Wuhan University, Wuhan 430072, China.
Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, China.
ACS Nano. 2024 Dec 24;18(51):34698-34707. doi: 10.1021/acsnano.4c10274. Epub 2024 Dec 10.
Two-dimensional covalent organic frameworks (2D COFs), a family of crystalline materials with abundant porous structures offering nanochannels for molecular transport, have enormous potential in the applications of separation, energy storage, and catalysis. However, 2D COFs remain limited by relatively large pore sizes (>1 nm) and weak interlayer interactions between 2D nanosheets, making it difficult to achieve efficient membranes to meet the selective sieving requirements for water molecules (0.3 nm) and hydrated salt ions (>0.7 nm). Here, we report a high-performance 2D COF membrane with narrowed channels (0.7 × 0.4 nm) and excellent mechanical performance constructed by the staggered stacking of cationic and anionic 2D COF nanosheets for selectively sieving of water molecules and hydrated salt ions. The mechanical performance has been improved by two times than that of single-phase 2D COF membranes due to the enhanced interlayer interactions between nanosheets. The stacked 2D COF membranes exhibit significantly improved monovalent salt ions rejection ratio (up to 77.9%) compared with single-phase COF membranes (∼49.2%), while maintaining comparable water permeability. The design of stacked 2D COF membranes provides a potential strategy for constructing high-performance nanoporous membranes to achieve precise molecular and ionic sieving.
二维共价有机框架材料(2D COFs)是一类具有丰富多孔结构的晶体材料,能提供分子传输的纳米通道,在分离、储能和催化等应用领域具有巨大潜力。然而,2D COFs仍受限于相对较大的孔径(>1 nm)以及二维纳米片之间较弱的层间相互作用,这使得难以制备出能满足对水分子(0.3 nm)和水合盐离子(>0.7 nm)进行选择性筛分要求的高效膜。在此,我们报道了一种高性能的2D COF膜,其具有狭窄通道(0.7×0.4 nm)和优异的机械性能,该膜由阳离子和阴离子二维COF纳米片交错堆叠构建而成,用于选择性筛分水分子和水合盐离子。由于纳米片之间层间相互作用增强,其机械性能比单相二维COF膜提高了两倍。与单相COF膜(约49.2%)相比,堆叠的二维COF膜表现出显著提高的单价盐离子截留率(高达77.9%),同时保持了相当的水渗透性。堆叠二维COF膜的设计为构建高性能纳米多孔膜以实现精确的分子和离子筛分提供了一种潜在策略。