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Preparation of Amino-Functional UiO-66/PIMs Mixed Matrix Membranes with bmimTf

机译:用BMIM的氨基功能性UIO-66 / PIMS混合基质膜的制备TF

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摘要

Development of mixed matrix membranes (MMMs) with excellent permeance and selectivity applied for gas separation has been the focus of world attention. However, preparation of high-quality MMMs still remains a big challenge due to the lack of enough interfacial interaction. Herein, ionic liquid (IL)-modified UiO-66-NH2 filler was first incorporated into microporous organic polymer material (PIM-1) to prepare dense and defect-free mixed matrix membranes via a coating modification and priming technique. IL [bmim][Tf2N] not only improves the hydrophobicity of UiO-66-NH2 and facilitates better dispersion of UiO-66-NH2 nanoparticles into PIM-1 matrix, but also promotes the affinity between MOFs and polymer, sharply reducing interface non-selective defects of MMMs. By using this strategy, we can not only facilely synthesize high-quality MMMs ignoring non-selective interfacial voids, but also structurally regulate MOF nanoparticles in the polymer substrate and greatly improve interface compatibility and stability of MMMs. The method also gives suitable level of generality for fabrication of versatile defect-free MMMs based on different combination of MOFs and PIMs. The prepared UiO-66-NH2@IL/PIM-1 membrane exhibited outstanding gas separation behavior with large CO2 permeation of 8283.4 Barrer and high CO2/N2 selectivity of 22.5.
机译:利用优异的渗透和选择性的混合基质膜(MMMS)的发展是世界上关注的焦点。然而,由于缺乏足够的界面相互作用,高质量MMM的制备仍然是一个很大的挑战。这里,首先将离子液体(IL)制剂 - 制剂UIO-66-NH2填料掺入微孔有机聚合物材料(PIM-1)中,以通过涂布改性和引发技术制备致密和无缺陷的混合基质膜。 IL [Bmim] [TF2N]不仅改善了UIO-66-NH2的疏水性,并促进了UIO-66-NH2纳米颗粒更好地分散到PIM-1基质中,而且还促进了MOF和聚合物之间的亲和力,急剧还原界面MMM的选择性缺陷。通过使用该策略,我们不仅可以忽略非选择性界面空隙的高质量MMM,而且可以在聚合物基板中结构调节MOF纳米颗粒,并大大提高MMM的界面相容性和稳定性。该方法还提供了合适的一般性水平,用于基于MOF和PIM的不同组合制造多功能缺陷MMM。制备的UIO-66-NH2 @ IL / PIM-1膜表现出优异的气体分离行为,具有8283.4个漏极的大二氧化碳渗透,CO 2 / N 2选择性为22.5。

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