UiO-66 is a promising metal–organic framework for photocatalytic applications. However, the ligand-to-metal charge transfer of an excited electron is inefficient in the pristine material. Herein, we assess the influence of missing linker defects on the electronic structure of UiO-66 and discuss their ability to improve ligand-to-metal charge transfer. Using a new defect classification system, which is transparent and easily extendable, we identify the most promising photocatalysts by considering both relative stability and electronic structure. We find that the properties of UiO-66 defect structures largely depend on the coordination of the constituent nodes and that the nodes with the strongest local distortions alter the electronic struct...
Lanthanide-based metal organic frameworks show very limited stabilities, which impedes their use in ...
The targeted incorporation of defects into crystalline matter allows for the manipulation of many pr...
A deep understanding of defects is essential for the optimisation of materials for solar energy conv...
UiO-66 is a promising metal-organic framework for photocatalytic applications. However, the ligand-t...
© 2017 American Chemical Society. Over the past decade, the zirconium-terephthalate UiO-66 has evolv...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
A combined theoretical and experimental study is performed in order to elucidate the effects of link...
A combined theoretical and experimental study is performed in order to elucidate the effects of link...
The differentiation between missing linker defects and missing cluster defects in MOFs is difficult,...
Vacancy lattice sites in the metal–organic framework UiO-66 are known to have a profound effect on t...
UiO-66 is regarded as an epitome of metal-organic frameworks (MOFs) because of its stability. Defect...
The metal–organic framework (MOF) material UiO-66 has emerged as one of the most promising MOF mater...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
The differentiation between missing linker defects and missing cluster defects in MOFs is difficult,...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
Lanthanide-based metal organic frameworks show very limited stabilities, which impedes their use in ...
The targeted incorporation of defects into crystalline matter allows for the manipulation of many pr...
A deep understanding of defects is essential for the optimisation of materials for solar energy conv...
UiO-66 is a promising metal-organic framework for photocatalytic applications. However, the ligand-t...
© 2017 American Chemical Society. Over the past decade, the zirconium-terephthalate UiO-66 has evolv...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
A combined theoretical and experimental study is performed in order to elucidate the effects of link...
A combined theoretical and experimental study is performed in order to elucidate the effects of link...
The differentiation between missing linker defects and missing cluster defects in MOFs is difficult,...
Vacancy lattice sites in the metal–organic framework UiO-66 are known to have a profound effect on t...
UiO-66 is regarded as an epitome of metal-organic frameworks (MOFs) because of its stability. Defect...
The metal–organic framework (MOF) material UiO-66 has emerged as one of the most promising MOF mater...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
The differentiation between missing linker defects and missing cluster defects in MOFs is difficult,...
For three-dimensional (3D) metal–organic frameworks (MOFs), the presence and nature of structural de...
Lanthanide-based metal organic frameworks show very limited stabilities, which impedes their use in ...
The targeted incorporation of defects into crystalline matter allows for the manipulation of many pr...
A deep understanding of defects is essential for the optimisation of materials for solar energy conv...