Self-standing and flexible covalent organic framework (COF) membranes for molecular separation

2D COFs fabricated from interface-confined reaction have the honeycomb lattice for nanofiltration. Almost all covalent organic framework (COF) materials conventionally fabricated by solvothermal method at high temperatures and pressures are insoluble and unprocessable powders, which severely hinder...

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Bibliographic Details
Published inScience advances Vol. 6; no. 41
Main Authors Liu, Jiangtao, Han, Gang, Zhao, Dieling, Lu, Kangjia, Gao, Jie, Chung, Tai-Shung
Format Journal Article
LanguageEnglish
Published American Association for the Advancement of Science 09.10.2020
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Summary:2D COFs fabricated from interface-confined reaction have the honeycomb lattice for nanofiltration. Almost all covalent organic framework (COF) materials conventionally fabricated by solvothermal method at high temperatures and pressures are insoluble and unprocessable powders, which severely hinder their widespread applications. This work develops an effective and facile strategy to construct flexible and free-standing pure COF membranes via the liquid-liquid interface-confined reaction at room temperature and atmospheric pressure. The aperture size and channel chemistry of COF membranes can be rationally designed by bridging various molecular building blocks via strong covalent bonds. Benefiting from the highly-ordered honeycomb lattice, high solvent permeances are successfully obtained and follow the trend of acetonitrile > acetone > methanol > ethanol > isopropanol. Interestingly, the imine-linked COF membrane shows higher nonpolar solvent permeances than b-ketoenamine-linked COF due to their difference in pore polarity. Both kinds of COF membranes exhibit high solvent permeances, precise molecular sieving, excellent shape selectivity, and sufficient flexibility for membrane-based separation science and technology.
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These authors contributed equally to this work.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.abb1110