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Tailoring the Transport Properties of Zeolitic Imidazolate Frameworks by Post-Synthetic Thermal Modification

机译:通过合成后热修饰量身定制沸石咪唑酸酯骨架的传输性能

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摘要

Understanding how to control transport properties of zeolitic imidazolate frameworks (ZIFs) is critical to extend ZIF-based membranes and adsorbents to a wide spectrum of gas and vapor separations: In this work, we report a facile post-synthetic thermal modification (PSTM) technique to tailor ZIFs' transport properties by balancing diffusivity and diffusion selectivity. With controllable dissociation of framework methyl groups from a precursor ZIF (ZIF-8), we have prepared thermally modified ZIFs showing substantially increased n-butane diffusivity and attractive n/iso-butane diffusion selectivity. Hybrid ZIP/polymer mixed-matrix membranes formed using these thermally modified ZIFs are expected to deliver attractive butane isomer separation performance. Membranes based on such materials can potentially be used to retrofit refinery alkylation units for producing premium gasoline blending stocks.
机译:了解如何控制沸石咪唑酯骨架(ZIFs)的传输性能对于将基于ZIF的膜和吸附剂扩展到广泛的气体和蒸汽分离至关重要:在这项工作中,我们报告了一种简便的合成后热改性(PSTM)技术通过平衡扩散率和扩散选择性来调整ZIF的传输性质。随着骨架甲基从前体ZIF(ZIF-8)的可控解离,我们制备了热改性的ZIF,显示出正丁烷扩散度大大提高,正/异丁烷扩散选择性极具吸引力。使用这些热改性ZIF形成的杂化ZIP /聚合物混合基质膜有望提供有吸引力的丁烷异构体分离性能。基于此类材料的膜可潜在地用于改造炼油厂烷基化装置,以生产优质汽油调和原料。

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