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Metal–Organic Framework Membranes: From Fabrication to Gas Separation

机译:金属有机框架膜:从制造到气体分离

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Gas membrane-based separation is considered one of the most effective technologies to address energy efficiency and large footprint challenges. Various classes of advanced materials, including polymers, zeolites, porous carbons, and metal–organic frameworks (MOFs) have been investigated as potential suitable candidates for gas membrane-based separations. MOFs possess a uniquely tunable nature in which the pore size and environment can be controlled by connecting metal ions (or metal ion clusters) with organic linkers of various functionalities. This unique characteristic makes them attractive for the fabrication of thin membranes, as both the diffusion and solubility components of permeability can be altered. Numerous studies have been published on the synthesis and applications of MOFs, as well as the fabrication of MOF-based thin films. However, few studies have addressed their gas separation properties for potential applications in membrane-based separation technologies. Here, we present a synopsis of the different types of MOF-based membranes that have been fabricated over the past decade. In this review, we start with a short introduction touching on the gas separation membrane technology. We also shed light on the various techniques developed for the fabrication of MOF as membranes, and the key challenges that still need to be tackled before MOF-based membranes can successfully be used in gas separation and implemented in an industrial setting.
机译:基于气膜的分离被认为是解决能源效率和大面积挑战的最有效技术之一。人们已经研究了各种高级材料,包括聚合物,沸石,多孔碳和金属有机骨架(MOF),它们是基于气膜分离的潜在合适候选材料。 MOF具有独特的可调性,其中可以通过将金属离子(或金属离子簇)与各种功能的有机连接基连接来控制孔径和环境。这种独特的特性使它们对于薄膜的制造具有吸引力,因为渗透性的扩散和溶解性成分均可改变。关于MOF的合成和应用以及基于MOF的薄膜的制造,已经发表了许多研究。然而,很少有研究针对基于膜的分离技术中的潜在应用解决其气体分离特性。在这里,我们介绍了过去十年中制造的不同类型的基于MOF的膜的概况。在本文中,我们首先简要介绍一下气体分离膜技术。我们还阐明了为制造MOF膜而开发的各种技术,以及基于MOF的膜能够成功用于气体分离并在工业环境中实施之前仍需要解决的关键挑战。

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