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Synthesis and transport properties of novel MOF/PIM-1/MOF sandwich membranes for gas separation

机译:新型mOF / pIm-1 / mOF夹层膜的合成及输运性能

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摘要

Metal-organic frameworks (MOFs) were supported on polymer membrane substrates for the fabrication of composite polymer membranes based on unmodified and modified polymer of intrinsic microporosity PIM-1. Layers of two different MOFs, ZIF-8 and HKUST-1, were grown onto neat PIM-1, amide surface-modified PIM-1 and HMDA surface-modified PIM-1. The surface-grown crystalline MOFs were characterized by a combination of several techniques, including powder X-ray diffraction, infrared spectroscopy and scanning electron microscopy to investigate the film morphology on the neat and modified PIM-1 membranes. The pure gas permeabilities of He, H2, O2, N2, CH4, CO2 were studied to understand the effect of the surface modification on the basic transport properties and evaluate the potential use of these membranes for industrially relevant gas separations. The pure gas transport was discussed in terms of permeability and selectivity, highlighting the effect of the MOF growth on the diffusion coefficients of the gas in the new composite polymer membranes. The results confirm that the growth of MOFs on polymer membranes can enhance the selectivity of the appropriately functionalized PIM-1, without a dramatic decrease of the permeability.
机译:金属有机骨架(MOF)被支撑在聚合物膜基材上,用于制造基于未改性的和固有微孔性PIM-1的改性聚合物的复合聚合物膜。在纯PIM-1,酰胺表面改性的PIM-1和HMDA表面改性的PIM-1上生长两种不同的MOF(ZIF-8和HKUST-1)的层。表面生长的晶体MOF通过多种技术的组合进行表征,包括粉末X射线衍射,红外光谱和扫描电子显微镜,以研究纯净和改性PIM-1膜上的膜形态。研究了He,H2,O2,N2,CH4,CO2的纯气体渗透率,以了解表面改性对基本运输性能的影响,并评估这些膜在工业相关气体分离中的潜在用途。讨论了纯气体的渗透性和选择性,强调了MOF生长对新型复合聚合物膜中气体扩散系数的影响。结果证实,MOF在聚合物膜上的生长可以增强适当官能化的PIM-1的选择性,而不会显着降低渗透率。

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