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3D打印的基于金属有机框架的混合基质薄膜复合膜。

3D printed MOF-based mixed matrix thin-film composite membranes.

作者信息

Elsaidi Sameh K, Ostwal Mayur, Zhu Lingxiang, Sekizkardes Ali, Mohamed Mona H, Gipple Michael, McCutcheon Jeffrey R, Hopkinson David

机构信息

DOE National Energy Technology Laboratory (NETL) Pittsburgh PA 15236 USA

Oak Ridge Institute for Science and Education Pittsburgh PA 15236 USA.

出版信息

RSC Adv. 2021 Jul 26;11(41):25658-25663. doi: 10.1039/d1ra03124d. eCollection 2021 Jul 19.

Abstract

MOF-based mixed-matrix membranes (MMMs) have attracted considerable attention due to their tremendous separation performance and facile processability. In large-scale applications such as CO separation from flue gas, it is necessary to have high gas permeance, which can be achieved using thin membranes. However, there are only a handful of MOF MMMs that are fabricated in the form of thin-film composite (TFC) membranes. We propose herein the fabrication of robust thin-film composite mixed-matrix membranes (TFC MMMs) using a three dimensional (3D) printing technique with a thickness of 2-3 μm. We systematically studied the effect of casting concentration and number of electrospray cycles on membrane thickness and CO separation performance. Using a low concentration of polymer of intrinsic microporosity (PIM-1) or PIM-1/HKUST-1 solution (0.1 wt%) leads to TFC membranes with a thickness of less than 500 nm, but the fabricated membranes showed poor CO/N selectivity, which could be attributed to microscopic defects. To avoid these microscale defects, we increased the concentration of the casting solution to 0.5 wt% resulting in TFC MMMs with a thickness of 2-3 μm which showed three times higher CO permeance than the neat PIM-1 membrane. These membranes represent the first examples of 3D printed TFC MMMs using the electrospray printing technique.

摘要

基于金属有机骨架(MOF)的混合基质膜(MMM)因其出色的分离性能和易于加工性而备受关注。在诸如从烟道气中分离CO等大规模应用中,需要有高的气体渗透率,这可以通过使用薄膜来实现。然而,以薄膜复合(TFC)膜形式制备的MOF MMM却寥寥无几。我们在此提出使用三维(3D)打印技术制备厚度为2 - 3μm的坚固薄膜复合混合基质膜(TFC MMM)。我们系统地研究了浇铸浓度和电喷雾循环次数对膜厚度和CO分离性能的影响。使用低浓度的固有微孔聚合物(PIM - 1)或PIM - 1/HKUST - 1溶液(0.1 wt%)会得到厚度小于500 nm的TFC膜,但所制备的膜表现出较差的CO/N选择性,这可能归因于微观缺陷。为避免这些微观缺陷,我们将浇铸溶液的浓度提高到0.5 wt%,从而得到厚度为2 - 3μm的TFC MMM,其CO渗透率比纯PIM - 1膜高出三倍。这些膜是使用电喷雾打印技术3D打印TFC MMM的首个实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/077a/9037021/7d16749417b3/d1ra03124d-f1.jpg

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