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All-Nanoporous Hybrid Membranes: Redefining Upper Limits on Molecular Separation Properties

机译:全纳米孔杂交膜:重新定位分子分离性能的上限

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摘要

New membrane-based molecular separation processes are an essential part of the strategy for sustainable chemical production. A large literature on "hybrid" or "mixed-matrix" membranes exists, in which nanoparticles of a higher-performance porous material are dispersed in a polymeric matrix to boost performance. We demonstrate that the hybrid membrane concept can be redefined to achieve much higher performance if the membrane matrix and the dispersed phase are both nanoporous crystalline materials, with no polymeric phase. As the first example of such a system, we find that surface-treated nanoparticles of the zeolite MFI can be incorporated in situ during growth of a polycrystalline membrane of the MOF ZIF-8. The resulting all-nanoporous hybrid membrane shows propylene/propane separation characteristics that exceed known upper-bound performance limits defined for polymers, nanoporous materials, and polymer-based hybrid membranes. This serves as a starting point for a new generation of chemical separation membranes containing interconnected nanoporous crystalline phases.
机译:基于新的膜的分子分离过程是可持续化学生产战略的重要组成部分。存在“杂交”或“混合矩阵”膜上的大学文献,其中更高性能多孔材料的纳米颗粒以聚合物基质分散以提高性能。我们证明,如果膜基质和分散相是纳米多孔晶体材料,则可以重新定义混合膜概念以实现更高的性能,而没有聚合物相。作为这种系统的第一实例,我们发现沸石MFI的表面处理纳米颗粒可以在MOF ZIF-8的多晶膜的生长期间原位掺入。得到的全纳米孔杂交膜显示出超过用于聚合物,纳米多孔材料和基于聚合物的杂化膜定义的已知的上界性能限制的丙烯/丙烷分离特性。这用作含有互连的纳米多孔晶相的新一代化学分离膜的起点。

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