Metal–organic framework (MOF) materials have recently been shown to have promising electronic and dielectric properties. This study involves investigating a diverse range of MOFs to rationalise how the different building blocks that form the structure can affect the electronic properties and dielectric response. The analysis, based on quantum mechanical calculations, includes the contribution from the metals involved, the organic linkers and the symmetry and topology of the framework and makes suggestions for future work on low-κ dielectric MOFs. The results confirm that the band gap is primarily due to the electronic levels of the organic linkers and that tuning the band gap can be easily achieved either by linker functionalisation or by i...
Metal-organic frameworks (MOFs) are crystalline compounds consisting of metal centers that are joine...
Metal-organic frameworks (MOFs), with their crystalline nanoporous three-dimensional structures, hav...
The metal-organic framework (MOF) is a large family of nanomaterials with tunable structural and ele...
Metal–organic framework (MOF) materials have recently been shown to have promising electronic and di...
The electronic structure of a class of [Zn<sub>4</sub>O(CO<sub>2</sub>)<sub>6</sub>] based metal–or...
A systematic investigation on electronic band structure of a series of isoreticular metal–organic fr...
The electronic structures and band gaps of MFU-4-type metal-organic frameworks can be systematically...
Recently the possibility of using electric fields as a further stimulus to trigger structural change...
Metal-organic frameworks (MOF) are fascinating hybrid materials, gained widespread attention from th...
Two isostructural highly porous metal-organic frameworks, the well-known Cu3(BTC)2 n (BTC = 1,3,5-be...
This thesis entails the utilisation of ab initio density functional theory (DFT) in conjunction with...
Metal-organic frameworks stand at the frontiers of molecular electronic research because they combin...
Metal–organic frameworks (MOFs) are emerging low-k dielectric materials for application in next-gene...
The dielectric behavior of metal–organic frameworks is highly dependent on the polarity of molecules...
Ferroelectric metal–organic frameworks are emerging as an exciting field of research and have witnes...
Metal-organic frameworks (MOFs) are crystalline compounds consisting of metal centers that are joine...
Metal-organic frameworks (MOFs), with their crystalline nanoporous three-dimensional structures, hav...
The metal-organic framework (MOF) is a large family of nanomaterials with tunable structural and ele...
Metal–organic framework (MOF) materials have recently been shown to have promising electronic and di...
The electronic structure of a class of [Zn<sub>4</sub>O(CO<sub>2</sub>)<sub>6</sub>] based metal–or...
A systematic investigation on electronic band structure of a series of isoreticular metal–organic fr...
The electronic structures and band gaps of MFU-4-type metal-organic frameworks can be systematically...
Recently the possibility of using electric fields as a further stimulus to trigger structural change...
Metal-organic frameworks (MOF) are fascinating hybrid materials, gained widespread attention from th...
Two isostructural highly porous metal-organic frameworks, the well-known Cu3(BTC)2 n (BTC = 1,3,5-be...
This thesis entails the utilisation of ab initio density functional theory (DFT) in conjunction with...
Metal-organic frameworks stand at the frontiers of molecular electronic research because they combin...
Metal–organic frameworks (MOFs) are emerging low-k dielectric materials for application in next-gene...
The dielectric behavior of metal–organic frameworks is highly dependent on the polarity of molecules...
Ferroelectric metal–organic frameworks are emerging as an exciting field of research and have witnes...
Metal-organic frameworks (MOFs) are crystalline compounds consisting of metal centers that are joine...
Metal-organic frameworks (MOFs), with their crystalline nanoporous three-dimensional structures, hav...
The metal-organic framework (MOF) is a large family of nanomaterials with tunable structural and ele...