[EN] Zirconium terephthalate UiO-66 type metal organic frameworks (MOFs) are known to be highly active, stable and reusable catalysts for the esterification of carboxylic acids with alcohols. Moreover, when defects are present in the structure of these MOFs, coordinatively unsaturated Zr ions with Lewis acid properties are created, which increase the catalytic activity of the resulting defective solids. In the present work, molecular modeling techniques combined with new experimental data on various defective hydrated and dehydrated materials allow to unravel the nature and role of defective active sites in the Fischer esterification and the role of coordinated water molecules to provide additional Bronsted sites. Periodic models of UiO-66 ...
The metal–organic framework (MOF) material UiO-66 has emerged as one of the most promising MOF mater...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
The catalytic performance of two different MOFs, UiO-66 and MOF-808, containing Lewis acid active si...
[EN] Zirconium terephthalate UiO-66 type metal organic frameworks (MOFs) are known to be highly acti...
[EN] The Lewis/Bronsted acidity and catalytic properties of UiO-66-type metal-organic frameworks are...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
UiO-66, composed of Zr-oxide bricks and terephthalate linkers, is currently one of the most studied ...
One of the major requirements in solid acid and base catalyzed reactions is that the reactants, inte...
Metal organic frameworks (MOFs) are a novel class of solid materials, comprising inorganic metal nod...
La valorisation de la biomasse en molécules plateformes, telles que les oléfines pour l'industrie de...
Zr-containing metal organic frameworks (MOFs) formed by terephthalate (UiO-66) and 2-aminoterephthal...
Zr-containing metal-organic frameworks (MOFs) formed by either terephthalate (UiO-66) or 2-aminotere...
International audience1 IntroductionThe necessary swap from petroleum feedstock to biomass feedstock...
© The Royal Society of Chemistry. As defects significantly affect the properties of metal-organic fr...
UiO-66, composed by Zr-oxide inorganic bricks [Zr-6(mu(3)-O)(4)(mu(3)-OH)(4)] and organic terephthal...
The metal–organic framework (MOF) material UiO-66 has emerged as one of the most promising MOF mater...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
The catalytic performance of two different MOFs, UiO-66 and MOF-808, containing Lewis acid active si...
[EN] Zirconium terephthalate UiO-66 type metal organic frameworks (MOFs) are known to be highly acti...
[EN] The Lewis/Bronsted acidity and catalytic properties of UiO-66-type metal-organic frameworks are...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
UiO-66, composed of Zr-oxide bricks and terephthalate linkers, is currently one of the most studied ...
One of the major requirements in solid acid and base catalyzed reactions is that the reactants, inte...
Metal organic frameworks (MOFs) are a novel class of solid materials, comprising inorganic metal nod...
La valorisation de la biomasse en molécules plateformes, telles que les oléfines pour l'industrie de...
Zr-containing metal organic frameworks (MOFs) formed by terephthalate (UiO-66) and 2-aminoterephthal...
Zr-containing metal-organic frameworks (MOFs) formed by either terephthalate (UiO-66) or 2-aminotere...
International audience1 IntroductionThe necessary swap from petroleum feedstock to biomass feedstock...
© The Royal Society of Chemistry. As defects significantly affect the properties of metal-organic fr...
UiO-66, composed by Zr-oxide inorganic bricks [Zr-6(mu(3)-O)(4)(mu(3)-OH)(4)] and organic terephthal...
The metal–organic framework (MOF) material UiO-66 has emerged as one of the most promising MOF mater...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
The catalytic performance of two different MOFs, UiO-66 and MOF-808, containing Lewis acid active si...