The stability of metal-organic frameworks is a key factor in many applications in some fields that require working under harsh conditions. It is known that a large number of MOFs are vulnerable to humid air. It means that when they are exposed to water, a structural collapse of the crystal happens. In this work, Molecular Dynamics simulations using a reactive force field have been performed to study the stability of MOF-74 against the adsorption of catechol, resorcinol and hydroquinone in the presence of water. We reproduced the water instability of Zn-MOF-74 and we studied the resistance of the structure. Our simulations showed that the three isomers generate a volume change in the framework but the structural collapse does not happen. In ...
Water dissociation represents one of the most important reactions in catalysis, essential to the sur...
Metal-organic frameworks (MOFs) are a new category of advanced porous materials undergoing study by ...
The structural instability in a humid environment of the majority of metal-organic frameworks (MOFs)...
The stability of metal-organic frameworks is a key factor in many applications in some fields that r...
The confined porous environment of metal organic frameworks (MOFs) is an attractive system for study...
A comprehensive model to describe the water stability of prototypical metal–organic frameworks (MOFs...
International audienceWe report an ab initio Molecular Dynamics study of the hydration process in a ...
International audienceThe hydration behavior of metal–organic frameworks (MOFs) is of interest both ...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
The breathing behavior of metal-organic frameworks (MOFs) is an exciting new phenomenon in which a f...
The practical use of metal–organic frameworks (MOFs) in applications ranging from adsorption separat...
The rational design of metal–organic frameworks (MOFs) with structural stability in the presence of ...
The stability of metal organic frameworks (MOFs) in a water-rich environment is a topic of significa...
International audiencePrior to envisage any implication of metal organic framework (MOP) materials i...
Porous zeolite-like metal-organic frameworks (ZMOFs) are novel materials for their potential applica...
Water dissociation represents one of the most important reactions in catalysis, essential to the sur...
Metal-organic frameworks (MOFs) are a new category of advanced porous materials undergoing study by ...
The structural instability in a humid environment of the majority of metal-organic frameworks (MOFs)...
The stability of metal-organic frameworks is a key factor in many applications in some fields that r...
The confined porous environment of metal organic frameworks (MOFs) is an attractive system for study...
A comprehensive model to describe the water stability of prototypical metal–organic frameworks (MOFs...
International audienceWe report an ab initio Molecular Dynamics study of the hydration process in a ...
International audienceThe hydration behavior of metal–organic frameworks (MOFs) is of interest both ...
Using a combination of molecular simulations techniques, we evaluate the structural tunability of th...
The breathing behavior of metal-organic frameworks (MOFs) is an exciting new phenomenon in which a f...
The practical use of metal–organic frameworks (MOFs) in applications ranging from adsorption separat...
The rational design of metal–organic frameworks (MOFs) with structural stability in the presence of ...
The stability of metal organic frameworks (MOFs) in a water-rich environment is a topic of significa...
International audiencePrior to envisage any implication of metal organic framework (MOP) materials i...
Porous zeolite-like metal-organic frameworks (ZMOFs) are novel materials for their potential applica...
Water dissociation represents one of the most important reactions in catalysis, essential to the sur...
Metal-organic frameworks (MOFs) are a new category of advanced porous materials undergoing study by ...
The structural instability in a humid environment of the majority of metal-organic frameworks (MOFs)...