Yang Jinlei, Tu Bin, Fang Munan, Li Lianshan, Tang Zhiyong
CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing 100049, P. R. China.
ACS Nano. 2022 Sep 27;16(9):13294-13300. doi: 10.1021/acsnano.2c05907. Epub 2022 Aug 15.
Distinct from the conventional view that nanopores are considered independent channels for mass transport, recent study on the covalent organic framework (COF)-based monolayers characteristic of an ordered nanopore array exhibits a series of interesting properties originating from the strong interactions between adjacent pores. These interactions are determined to be highly dependent on interpore distance and pose a significant influence on the ion transport, accounting for the exceptional membrane performance including both selectivity and conductance. In this Perspective, we discuss the recently discovered nanoscale pore-pore coupling as well as the exciting features of porous nanostructures. We also look at the challenges and future opportunities of ion transport in ordered porous monolayers in the aspects of both fundamental research and practical use.
与传统观点认为纳米孔是独立的质量传输通道不同,最近对具有有序纳米孔阵列特征的共价有机框架(COF)基单层的研究显示出一系列源自相邻孔之间强相互作用的有趣特性。这些相互作用被确定高度依赖于孔间距,并对离子传输产生重大影响,这解释了包括选择性和电导率在内的卓越膜性能。在本观点文章中,我们讨论了最近发现的纳米级孔 - 孔耦合以及多孔纳米结构的令人兴奋的特征。我们还从基础研究和实际应用两个方面审视了有序多孔单层中离子传输的挑战和未来机遇。