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使用二维 MOF 纳米片制备超薄膜用于可调气体分离。

Fabrication of Ultrathin Membranes Using 2D-MOF Nanosheets for Tunable Gas Separation.

机构信息

State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chmical Technology, Beijing, 100029, P. R China.

出版信息

Chem Asian J. 2021 Nov 2;16(21):3413-3418. doi: 10.1002/asia.202100875. Epub 2021 Sep 8.

Abstract

Two-dimensional (2D) metal-organic frameworks (MOF) nanosheets have emerged as novel membrane materials for gas separation. However, the development of ultrathin MOF membranes with tunable separation performances is still a challenge. Herein, we developed a facile GO-assisted restacking method to fabricate defect-free membranes with monolayer Zr-BTB nanosheets. Obtained ultrathin membranes ranging from 130 nm to 320 nm show tunable separation performances and exceed the 2008 Robeson upper bound by changing the amount of nanolayers in vertical stacking direction. Furthermore, a heating filtration method was used to change the restacking process of nanosheets in the horizontal direction. As a result, H /CO selectivity can be enhanced by two times with the same membrane thickness (130 nm) and H permeance is almost maintained to be 7.0×10  mol m  s  pa . This method may provide a possible way to efficiently tune the gas separation performances of MOF membranes.

摘要

二维(2D)金属-有机骨架(MOF)纳米片作为新型气体分离膜材料而出现。然而,开发具有可调分离性能的超薄 MOF 膜仍然是一个挑战。在此,我们开发了一种简便的 GO 辅助重堆积方法,以制造具有单层 Zr-BTB 纳米片的无缺陷膜。获得的厚度从 130nm 到 320nm 的超薄膜具有可调的分离性能,并通过改变垂直堆叠方向中的纳米层数量而超过 2008 年 Robeson 上限。此外,使用加热过滤方法来改变纳米片在水平方向上的重堆积过程。结果,在相同膜厚(130nm)下,H/CO 选择性可提高两倍,而 H 渗透率几乎保持在 7.0×10  mol m  s  pa 不变。该方法可能为有效地调节 MOF 膜的气体分离性能提供了一种可能的途径。

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