The mechanism and products of the structural collapse of the metal–organic frameworks (MOFs) UiO-66, MIL-140B and MIL-140C upon ball-milling are investigated through solid state 13C NMR and pair distribution function (PDF) studies, finding amorphization to proceed by the breaking of a fraction of metal–ligand bonding in each case. The amorphous products contain inorganic–organic bonding motifs reminiscent of the crystalline phases. Whilst the inorganic Zr6O4(OH)4 clusters of UiO-66 remain intact upon structural collapse, the ZrO backbone of the MIL-140 frameworks undergoes substantial distortion. Density functional theory calculations have been performed to investigate defective models of MIL-140B and show, through comparison of calculated ...
Les Metal-Organic Frameworks (MOF) sont des matériaux hybrides poreux cristallisés constitués de clu...
The structures of Zr and Hf metal-organic frameworks (MOFs) are very sensitive to small changes in s...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
The mechanism and products of the structural collapse of the metal–organic frameworks (MOFs) UiO-66,...
The mechanism and products of the structural collapse of the metal-organic frameworks (MOFs) , and u...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
We report an investigation of the "missing-linker phenomenon" in the Zr-based metal organic framewor...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
The structures of Zr and Hf metal-organic frameworks (MOFs) are very sensitive to small changes in s...
Les Metal-Organic Frameworks (MOF) sont des matériaux hybrides poreux cristallisés constitués de clu...
The structures of Zr and Hf metal-organic frameworks (MOFs) are very sensitive to small changes in s...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
The mechanism and products of the structural collapse of the metal–organic frameworks (MOFs) UiO-66,...
The mechanism and products of the structural collapse of the metal-organic frameworks (MOFs) , and u...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
UiO-66 is a showcase example of an extremely stable metal-organic framework, which maintains its str...
We report an investigation of the "missing-linker phenomenon" in the Zr-based metal organic framewor...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
The structures of Zr and Hf metal-organic frameworks (MOFs) are very sensitive to small changes in s...
Les Metal-Organic Frameworks (MOF) sont des matériaux hybrides poreux cristallisés constitués de clu...
The structures of Zr and Hf metal-organic frameworks (MOFs) are very sensitive to small changes in s...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...