We combine experiments and simulations to study the adsorption of water in several UiO-66 frameworks (ideal and defect-containing structures). We propose a new set of charges for the frameworks that accurately provides the water-structure interaction at the molecular level. The new set is suitable for predicting water adsorption in the ideal UiO-66 structure, providing for the first time, good agreement between experimental and calculated isotherms. The proposed procedure for tuning the point charges of the framework to achieve agreement with experiments is universal and can easily be extended to other MOFs. We explore the structural characteristics in terms of adsorption of water and the potential application of these materials to water ha...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
This work aimed to investigate the adsorption of toluene in UiO-66 materials. Toluene is a volatile,...
International audienceThis review article presents the fundamental and practical aspects of water ad...
We combine experiments and simulations to study the adsorption of water in several UiO-66 frameworks...
The nanoporous and tunable nature of metal–organic frameworks (MOFs) has made them promising adsorbe...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
Structural defects in metal–organic frameworks can be exploited to tune material properties. In the ...
Tailoring defects in metal–organic frameworks is important for enhancing sorption and reaction prope...
Water is essential to life, yet a majority of people in the world currently experience water scarcit...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
International audienceAdsorption-based heat transfer (AHT) devices are promising alternatives for gr...
The ability of some highly porous materials to adsorb and desorb water vapor under atmospheric condi...
In this work, adsorption properties of the UiO-66 metal–organic framework were investigated, with pa...
The mechanism of water adsorption in NU-1500-Cr, a high-performance atmospheric water harvest- ing m...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
This work aimed to investigate the adsorption of toluene in UiO-66 materials. Toluene is a volatile,...
International audienceThis review article presents the fundamental and practical aspects of water ad...
We combine experiments and simulations to study the adsorption of water in several UiO-66 frameworks...
The nanoporous and tunable nature of metal–organic frameworks (MOFs) has made them promising adsorbe...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
Structural defects in metal–organic frameworks can be exploited to tune material properties. In the ...
Tailoring defects in metal–organic frameworks is important for enhancing sorption and reaction prope...
Water is essential to life, yet a majority of people in the world currently experience water scarcit...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
International audienceAdsorption-based heat transfer (AHT) devices are promising alternatives for gr...
The ability of some highly porous materials to adsorb and desorb water vapor under atmospheric condi...
In this work, adsorption properties of the UiO-66 metal–organic framework were investigated, with pa...
The mechanism of water adsorption in NU-1500-Cr, a high-performance atmospheric water harvest- ing m...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
This work aimed to investigate the adsorption of toluene in UiO-66 materials. Toluene is a volatile,...
International audienceThis review article presents the fundamental and practical aspects of water ad...