Metal-organic framework (MOF) materials show promise for H2 storage and it is widely predicted by computational modelling that MOFs incorporating ultra-micropores are optimal for H2 binding due to enhanced overlapping potentials. We report the investigation using inelastic neutron scattering of the interaction of H2 in an ultra-microporous MOF material showing low H2 uptake capacity. The study has revealed that adsorbed H2 at 5 K has a liquid recoil motion along the channel with very little interaction with the MOF host, consistent with the observed low uptake. The low H2 uptake is not due to incomplete activation or decomposition as the desolvated MOF shows CO2 uptake with a measured pore volume close to that of the single crystal pore vol...
In this paper, hydrogen adsorption in metal-organic framework MIL-101(Cr) is investigated through a ...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
Metal-organic frameworks (MOFs) have been identified as candidate hydrogen storage materials due to ...
Metal-organic framework (MOF) materials show promise for H2 storage and it is widely predicted by co...
AbstractMetal–organic framework (MOF) materials show promise for H2 storage and it is widely predict...
Statement of Objectives: 1. Synthesize viable porous MOFs for high H2 storage at ambient conditions ...
Hydrogen storage systems based on the readily reversible adsorption of H{sub 2} in porous materials ...
Hydrogen adsorption in porous, high surface area, and stable metal organic frameworks (MCF's) appear...
Hydrogen adsorption in high surface area nanoporous coordination polymers has attracted a great deal...
Physico-chem. adsorption of mols. in microporous materials has long been used in industrial processe...
In this paper, hydrogen adsorption in metal-organic framework MIL-101(Cr) is investigated through a ...
Porous metal-organic frameworks (MOFs) have exhibited great potential for gas storage.1 The largest ...
A combined experimental and theoretical study of H2 adsorption was carried out in Co CUK 1 and Mg CU...
In this paper, hydrogen adsorption in metal–organic framework MIL-101(Cr) is investigated through a...
Physisorption of hydrogen in nanoporous materials offers an efficient and competitive alternative fo...
In this paper, hydrogen adsorption in metal-organic framework MIL-101(Cr) is investigated through a ...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
Metal-organic frameworks (MOFs) have been identified as candidate hydrogen storage materials due to ...
Metal-organic framework (MOF) materials show promise for H2 storage and it is widely predicted by co...
AbstractMetal–organic framework (MOF) materials show promise for H2 storage and it is widely predict...
Statement of Objectives: 1. Synthesize viable porous MOFs for high H2 storage at ambient conditions ...
Hydrogen storage systems based on the readily reversible adsorption of H{sub 2} in porous materials ...
Hydrogen adsorption in porous, high surface area, and stable metal organic frameworks (MCF's) appear...
Hydrogen adsorption in high surface area nanoporous coordination polymers has attracted a great deal...
Physico-chem. adsorption of mols. in microporous materials has long been used in industrial processe...
In this paper, hydrogen adsorption in metal-organic framework MIL-101(Cr) is investigated through a ...
Porous metal-organic frameworks (MOFs) have exhibited great potential for gas storage.1 The largest ...
A combined experimental and theoretical study of H2 adsorption was carried out in Co CUK 1 and Mg CU...
In this paper, hydrogen adsorption in metal–organic framework MIL-101(Cr) is investigated through a...
Physisorption of hydrogen in nanoporous materials offers an efficient and competitive alternative fo...
In this paper, hydrogen adsorption in metal-organic framework MIL-101(Cr) is investigated through a ...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
Metal-organic frameworks (MOFs) have been identified as candidate hydrogen storage materials due to ...