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Photo-tailored heterocrystalline covalent organic framework membranes for organics separation.


ABSTRACT: Organics separation for purifying and recycling environment-detrimental solvents is essential to sustainable chemical industries. Covalent organic framework (COF) membranes hold great promise in affording precise and fast organics separation. Nonetheless, how to well coordinate facile processing-high crystalline structure-high separation performance remains a critical issue and a grand challenge. Herein, we propose a concept of heterocrystalline membrane which comprises high-crystalline regions and low-crystalline regions. The heterocrystalline COF membranes are fabricated by a two-step procedure, i.e., dark reaction for the construction of high-crystalline regions followed by photo reaction for the construction of low-crystalline regions, thus linking the high-crystalline regions tightly and flexibly, blocking the defect in high-crystalline regions. Accordingly, the COF membrane exhibits sharp molecular sieving properties with high organic solvent permeance up to 44-times higher than the state-of-the-art membranes.

SUBMITTER: Yuan J 

PROVIDER: S-EPMC9250524 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Photo-tailored heterocrystalline covalent organic framework membranes for organics separation.

Yuan Jinqiu J   You Xinda X   Khan Niaz Ali NA   Li Runlai R   Zhang Runnan R   Shen Jianliang J   Cao Li L   Long Mengying M   Liu Yanan Y   Xu Zijian Z   Wu Hong H   Jiang Zhongyi Z  

Nature communications 20220702 1


Organics separation for purifying and recycling environment-detrimental solvents is essential to sustainable chemical industries. Covalent organic framework (COF) membranes hold great promise in affording precise and fast organics separation. Nonetheless, how to well coordinate facile processing-high crystalline structure-high separation performance remains a critical issue and a grand challenge. Herein, we propose a concept of heterocrystalline membrane which comprises high-crystalline regions  ...[more]

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