The fabrication of molecular gas sieving materials with specific affinities for a single gas species and able to store large quantities of materials at a low or atmospheric pressure is desperately required to reduce the adverse effects of coal and oil usage in carbon capture. Fundamental understanding of the dynamic adsorption of gas, the diffusion mechanisms across thin film membranes, and the impact of interfaces play a vital role in developing these materials. In this work, single gas permeation tests across micro-porous membrane materials, based on metal organic framework crystals grown on the surface of carbon nanotubes (ZiF-8@CNT), were performed for the first time in-situ at the Australian Synchrotron on the small angle X-ray scatter...
The mass transfer of the guest molecules in nanoporous host materials, in particular in metal-organi...
The monodisperse pore structure of MOFs (metal–organic frameworks) is advantageous for investigating...
A metal organic framework Cu(tpt)BF 4· 3 4 H 2O was synthesized as a potential carbon capture materi...
The fabrication of molecular gas sieving materials with specific affinities for a single gas species...
Grain boundaries are an unavoidable microstructural feature in intergrown polycrystalline metal-orga...
AbstractGrain boundaries are an unavoidable microstructural feature in intergrown polycrystalline me...
Nanoporous molecular sieve materials like metal organic frameworks (MOFs) and metal oxide nanotubes ...
Metal–organic frameworks are promising materials for energy-efficient gas separations, but little is...
Knowledge about the interactions between gas molecules and adsorption sites is essential to customiz...
The main challenge for gas storage and separation in nanoporous materials is that many molecules of ...
Adsorption experiments have been interpreted frequently with simplified model geometries, such as id...
The monodisperse pore structure of MOFs (metal–organic frameworks) is advantageous for investigating...
A metal organic framework Cu(tpt)BF4·¾H2O was synthesized as a potential carbon capture material, wi...
International audienceA dynamic step-by-step methodology has been implemented to grow the HKUST-1 po...
Metal-organic frameworks are promising materials for energy-efficient gas separations, but little is...
The mass transfer of the guest molecules in nanoporous host materials, in particular in metal-organi...
The monodisperse pore structure of MOFs (metal–organic frameworks) is advantageous for investigating...
A metal organic framework Cu(tpt)BF 4· 3 4 H 2O was synthesized as a potential carbon capture materi...
The fabrication of molecular gas sieving materials with specific affinities for a single gas species...
Grain boundaries are an unavoidable microstructural feature in intergrown polycrystalline metal-orga...
AbstractGrain boundaries are an unavoidable microstructural feature in intergrown polycrystalline me...
Nanoporous molecular sieve materials like metal organic frameworks (MOFs) and metal oxide nanotubes ...
Metal–organic frameworks are promising materials for energy-efficient gas separations, but little is...
Knowledge about the interactions between gas molecules and adsorption sites is essential to customiz...
The main challenge for gas storage and separation in nanoporous materials is that many molecules of ...
Adsorption experiments have been interpreted frequently with simplified model geometries, such as id...
The monodisperse pore structure of MOFs (metal–organic frameworks) is advantageous for investigating...
A metal organic framework Cu(tpt)BF4·¾H2O was synthesized as a potential carbon capture material, wi...
International audienceA dynamic step-by-step methodology has been implemented to grow the HKUST-1 po...
Metal-organic frameworks are promising materials for energy-efficient gas separations, but little is...
The mass transfer of the guest molecules in nanoporous host materials, in particular in metal-organi...
The monodisperse pore structure of MOFs (metal–organic frameworks) is advantageous for investigating...
A metal organic framework Cu(tpt)BF 4· 3 4 H 2O was synthesized as a potential carbon capture materi...