Angewandte Chemie International Edition · 2021 · 29 citations · 76 references
Membrane StructureEngineeringChemistryMetal-organic Framework MembranesChemical EngineeringRod ArraysRobust Mof MembranesMembrane TechnologyPolymer ChemistryMaterials ScienceMolecular SievingPolymer MembranesMolecular EngineeringPolymer MembraneCrystallographyMembrane FormationSelf-assemblyPolymer ScienceFunctional MaterialsDistinct Mof Lattices
Metal-organic framework membranes are frequently used in gas separations, but rare in pervaporation for liquid chemical upgrading, especially for separating water from polyols, due to lack of highly compact and robust micro-architecture. Here, we report hetero-lattice intergrown membranes in which amino-MIL-101 (Cr) particles embedded into the micro-gaps of MIL-53 (Al) rod arrays after secondary growth. By means of high-resolution TEM and two-dimensional topologic simulation, the connection between these two distinct MOF lattices at the molecular-level and their crystallographic geometry harmony is identified, which leads to a close-knit structure at the crystal boundaries of membranes. Typically, the membrane shows a separation factor as high as 13 000 for a 90/10 ethanediol/water solution in pervaporation, yields polymer-grade ethanediol, and saves ca. 32 % of energy consumption vs. vacuum distillation. It has a highly robust micro-architecture, with great tolerance to high pressure, durability against ultrasonic therapy and long-term separation stability over 600 h.
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The Chemistry and Applications of Metal-Organic Frameworks
Hiroyasu Furukawa, Kyle E. Cordova, M. O’Keeffe et al. · Science · 2013 · 15.9K citations
Materials Science, Inorganic Chemistry, Organic Material Chemistry +13
A Chromium Terephthalate-Based Solid with Unusually Large Pore Volumes and Surface Area
Gérard Férey, Caroline Mellot‐Draznieks, Christian Serre et al. · Science · 2005 · 5.2K citations · Full text