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Synthesis of zeolitic imidazolate framework-78 molecular-sieve membrane: defect formation and elimination

机译:沸石咪唑酯骨架-78分子筛膜的合成:缺陷的形成与消除

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摘要

Metal-organic frameworks (MOFs) are ideal micro- and mesoporous materials for molecular separation. A defect-free MOF membrane supported on a porous substrate is required for high separation performance, however it is rather difficult to eliminate the micro-defects or intercrystalline gaps in the membranes. In this work, a ZIF-78 membrane was synthesized on a porous ZnO support. The defect formation mechanism in the membrane was illustrated by in situ thermal expansion analysis. A novel strategy was proposed to eliminate not only the macroscopic defects but also the intercrystalline gaps in the membrane by controlling the diffusion of solvent molecules through the channels of the ZIF-78 crystal. The ZIF-78 membrane exhibited high performance in separating H2. The ideal selectivity and mixture separation factor of H2-CO2 are 11.0 and 9.5, respectively. The approach reported in this paper offers an efficient and universal strategy for the facile synthesis of high-quality MOF membranes on porous supports.
机译:金属有机骨架(MOF)是用于分子分离的理想的微孔和中孔材料。为了获得高分离性能,需要在多孔基材上支撑无缺陷的MOF膜,但是要消除膜中的微缺陷或晶间间隙是相当困难的。在这项工作中,在多孔ZnO载体上合成了ZIF-78膜。通过原位热膨胀分析说明了膜中的缺陷形成机理。通过控制溶剂分子通过ZIF-78晶体通道的扩散,提出了一种新颖的策略,不仅消除了宏观缺陷,而且消除了膜中的晶间间隙。 ZIF-78膜在分离H2方面表现出高性能。 H2-CO2的理想选择性和混合物分离系数分别为11.0和9.5。本文报道的方法为在多孔载体上轻松合成高质量MOF膜提供了一种有效且通用的策略。

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