AbstractGrain boundaries are an unavoidable microstructural feature in intergrown polycrystalline metal-organic framework (MOF) membranes. They have been suspected to be less size-selective than a MOF’s micropores, resulting in suboptimal separation performances – a speculation recently confirmed by transmission electron microscopy of MOF ZIF-8. Single-crystal membranes, without grain boundaries, should confine mass transport to micropores and reflect the intrinsic selectivity of the porous material. Here, we demonstrate the feasibility of fabricating single-crystal MOF membranes and directly measuring gas permeability through such a membrane using ZIF-8 as an exemplary MOF. Our single-crystal ZIF-8 membranes achieved ideal selectivities up...
The gas–framework interaction induced gate-opening phenomenon occurring in zeolitic imidazolate fram...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Metal-organic framework (MOF) materials have an enormous potential in separation applications, but t...
Grain boundaries are an unavoidable microstructural feature in intergrown polycrystalline metal-orga...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Effective and economical carbon dioxide-methane separation (CO2/CH4) is highly desirable in several ...
Metal-organic frameworks (MOFs) were supported on polymer membrane substrates for the fabrication of...
We studied the separation of four practice-relevant gas mixtures on three different membranes which ...
A simple yet effective strategy was developed to prepare a metal-organic framework- (MOF-) based asy...
Modulating the crystal morphology, or the exposed crystal facets, of metal–organic frameworks (MOFs)...
ZIF-8 is a zeolitic imidazole-based metal-organic framework with large cavities interconnected by na...
Pure metal−organic framework (MOF) layers deposited on porous supports are important candidates for...
Pure metal–organic framework (MOF) layers deposited on porous supports are important candidates for ...
The predicted permeation selectivity of a binary gas mixture for a metal-organic framework ZIF-8 mem...
Metal–organic frameworks (MOFs) represent the largest known class of porous crystalline materials ev...
The gas–framework interaction induced gate-opening phenomenon occurring in zeolitic imidazolate fram...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Metal-organic framework (MOF) materials have an enormous potential in separation applications, but t...
Grain boundaries are an unavoidable microstructural feature in intergrown polycrystalline metal-orga...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Effective and economical carbon dioxide-methane separation (CO2/CH4) is highly desirable in several ...
Metal-organic frameworks (MOFs) were supported on polymer membrane substrates for the fabrication of...
We studied the separation of four practice-relevant gas mixtures on three different membranes which ...
A simple yet effective strategy was developed to prepare a metal-organic framework- (MOF-) based asy...
Modulating the crystal morphology, or the exposed crystal facets, of metal–organic frameworks (MOFs)...
ZIF-8 is a zeolitic imidazole-based metal-organic framework with large cavities interconnected by na...
Pure metal−organic framework (MOF) layers deposited on porous supports are important candidates for...
Pure metal–organic framework (MOF) layers deposited on porous supports are important candidates for ...
The predicted permeation selectivity of a binary gas mixture for a metal-organic framework ZIF-8 mem...
Metal–organic frameworks (MOFs) represent the largest known class of porous crystalline materials ev...
The gas–framework interaction induced gate-opening phenomenon occurring in zeolitic imidazolate fram...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Metal-organic framework (MOF) materials have an enormous potential in separation applications, but t...