Zhang Jie, Li Xiaofeng, Yang Feng, Ouyang Zhengdong, He Pan, Jia Zhimin, Long Honghan, He Ningning, Zhang Yingdan, Zou Yingdi, Jiang Bo, Han Ziqian, Tao Guohong, Liu Ning, Li Yang, Ma Lijian
College of Chemistry, Key Laboratory of Radiation Physics & Technology, Ministry of Education, Sichuan University, Chengdu 610064, P.R. China.
Institute of Materials, China Academy of Engineering Physics, Mianyang 621907, P.R. China.
ACS Appl Mater Interfaces. 2024 Dec 11;16(49):68306-68315. doi: 10.1021/acsami.4c14803. Epub 2024 Dec 1.
The efficient preparation of two-dimensional large-sized monolayer covalent organic framework (COF) nanosheets for highly permeable membranes has posed a long-standing challenge in the COF field. While the self-exfoliation of charged COFs represents a promising method for nanosheet production, its efficiency requires further enhancement. In this study, we present a novel finding that the presence of hydroxyl groups on the monomer significantly influences the self-exfoliation efficiency of charged COFs. Through precise regulation of hydroxyl group numbers on the monomers, we successfully achieved the efficient fabrication of large monolayer cationic COF nanosheets with impressive solubilities in common organic solvents. By virtue of their positive charge, COF monolayer nanosheets rapidly interacted with negatively charged monolayer graphene oxide (GO) in solution, facilitating their assembly into interlaced composite membranes through electrostatic interactions. The composite membranes benefited from the strong Coulombic attraction between the COF and GO nanosheets, leading to enhanced membrane stability, while the shielding effect of GO on the COF pores contributed to improved size sieving efficiency. This innovative strategy enabled the composite membranes to achieve highly selective separation of ReO and MoO, with a remarkable 100% interception rate for MoO.
高效制备用于高渗透性膜的二维大尺寸单层共价有机框架(COF)纳米片在COF领域一直是一项长期挑战。虽然带电COF的自剥离是一种很有前景的纳米片制备方法,但其效率仍需进一步提高。在本研究中,我们提出了一个新发现,即单体上羟基的存在显著影响带电COF的自剥离效率。通过精确调控单体上的羟基数,我们成功实现了大尺寸单层阳离子COF纳米片的高效制备,这些纳米片在常见有机溶剂中具有令人印象深刻的溶解度。由于其正电荷,COF单层纳米片在溶液中与带负电荷的单层氧化石墨烯(GO)迅速相互作用,通过静电相互作用促进它们组装成交错复合膜。复合膜受益于COF和GO纳米片之间强大的库仑吸引力,从而提高了膜的稳定性,而GO对COF孔的屏蔽作用有助于提高尺寸筛分效率。这种创新策略使复合膜能够实现对ReO和MoO的高选择性分离,对MoO的截留率高达100%。