Structural defects in metal–organic frameworks can be exploited to tune material properties. In the case of UiO-66 material, they may change its nature from hydrophobic to hydrophilic and therefore affect the mechanism of adsorption of polar and non-polar molecules. In this work, we focused on understanding this mechanism during adsorption of molecules with different dipole moments, using the standard volumetric adsorption measurements, IR spectroscopy, DFT + D calculations, and Monte Carlo calculations. Average occupation profiles showed that polar and nonpolar molecules change their preferences for adsorption sites. Hence, defects in the structure can be used to tune the adsorption properties of the MOF as well as to control the position ...
This thesis presents evidence of preferential adsorption and the associated dipole-dipole interactio...
The adsorption of water on hydrophobic zeolites such as silicalite and on hydrophilic MOF (metal-org...
International audiencePrior to envisage any implication of metal organic framework (MOP) materials i...
Structural defects in metal–organic frameworks can be exploited to tune material properties. In the ...
We combine experiments and simulations to study the adsorption of water in several UiO-66 frameworks...
An isoreticular family of metal-organic frameworks is post-synthetically subjected to polymer grafti...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
In this work, adsorption properties of the UiO-66 metal–organic framework were investigated, with pa...
Adsorption of polar and nonpolar molecules in hydrophilic–hydrophobic STAM-1 metal–organic framework...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
Tailoring defects in metal–organic frameworks is important for enhancing sorption and reaction prope...
The nanoporous and tunable nature of metal–organic frameworks (MOFs) has made them promising adsorbe...
This thesis presents evidence of preferential adsorption and the associated dipole-dipole interactio...
The adsorption of water on hydrophobic zeolites such as silicalite and on hydrophilic MOF (metal-org...
International audiencePrior to envisage any implication of metal organic framework (MOP) materials i...
Structural defects in metal–organic frameworks can be exploited to tune material properties. In the ...
We combine experiments and simulations to study the adsorption of water in several UiO-66 frameworks...
An isoreticular family of metal-organic frameworks is post-synthetically subjected to polymer grafti...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
In this work, adsorption properties of the UiO-66 metal–organic framework were investigated, with pa...
Adsorption of polar and nonpolar molecules in hydrophilic–hydrophobic STAM-1 metal–organic framework...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
Tailoring defects in metal–organic frameworks is important for enhancing sorption and reaction prope...
The nanoporous and tunable nature of metal–organic frameworks (MOFs) has made them promising adsorbe...
This thesis presents evidence of preferential adsorption and the associated dipole-dipole interactio...
The adsorption of water on hydrophobic zeolites such as silicalite and on hydrophilic MOF (metal-org...
International audiencePrior to envisage any implication of metal organic framework (MOP) materials i...