We report an investigation of the “missing-linker phenomenon” in the Zr-based metal–organic framework UiO-66 using atomistic force field and quantum chemical methods. For a vacant benzene dicarboxylate ligand, the lowest energy charge-capping mechanism involves acetic acid or Cl<sup>–</sup>/H<sub>2</sub>O. The calculated defect free energy of formation is remarkably low, consistent with the high defect concentrations reported experimentally. A dynamic structural instability is identified for certain higher defect concentrations. In addition to the changes in material properties upon defect formation, we assess the formation of molecular aggregates, which provide an additional driving force for ligand loss. These results are expected to be o...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
The mechanism and products of the structural collapse of the metal-organic frameworks (MOFs) , and u...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
We report an investigation of the “missing-linker phenomenon” in the Zr-based metal–organic framewor...
We report an investigation of the “missing-linker phenomenon” in the Zr-based metal–organic framewor...
We report an investigation of the "missing-linker phenomenon" in the Zr-based metal organic framewor...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
We present force fields developed from periodic density functional theory (DFT) calculations that ca...
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...
The mechanism and products of the structural collapse of the metal–organic frameworks (MOFs) UiO-66,...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
The mechanism and products of the structural collapse of the metal-organic frameworks (MOFs) , and u...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...
We report an investigation of the “missing-linker phenomenon” in the Zr-based metal–organic framewor...
We report an investigation of the “missing-linker phenomenon” in the Zr-based metal–organic framewor...
We report an investigation of the "missing-linker phenomenon" in the Zr-based metal organic framewor...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
The UiO-66 metal organic framework is one of the most thermally and chemically stable hybrid materia...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
We present force fields developed from periodic density functional theory (DFT) calculations that ca...
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...
The mechanism and products of the structural collapse of the metal–organic frameworks (MOFs) UiO-66,...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
The mechanism and products of the structural collapse of the metal-organic frameworks (MOFs) , and u...
Post-synthetic ligand exchange in the prototypical zirconium-based metal–organic framework (MOF) UiO...