The electronic structures and band gaps of MFU-4-type metal-organic frameworks can be systematically engineered leading to a family of isostructural microporous solids. Electrical properties of the microcrystalline samples are investigated by temperature-dependent broad-band dielectric and optical spectroscopy, which are corroborated by full band structure calculations performed for framework and cluster model compounds at multiple levels of density functional theory. The combined results glean a detailed picture of relative shifts and dispersion of molecular orbitals when going from zero-dimensional clusters to three-dimensional periodic solids, thus allowing to develop guidelines for tailoring the electronic properties of this class of se...
The tetratopic ligand tetrathiafulvalene-tetrabenzoate (H[subscript 4]TTFTB) is used to synthesize Z...
© 2017 The Royal Society of Chemistry. Electronic structure calculations are used to develop design ...
The dielectric behavior of metal–organic frameworks is highly dependent on the polarity of molecules...
Metal–organic framework (MOF) materials have recently been shown to have promising electronic and di...
Two isostructural highly porous metal-organic frameworks, the well-known Cu3(BTC)2 n (BTC = 1,3,5-be...
Metal-organic frameworks (MOFs) are crystalline compounds consisting of metal centers that are joine...
Metal-organic frameworks stand at the frontiers of molecular electronic research because they combin...
Abstract: The binding energy of an electron in a material is a fun-damental characteristic, which de...
Metal-organic frameworks (MOFs), with their crystalline nanoporous three-dimensional structures, hav...
This thesis entails the utilisation of ab initio density functional theory (DFT) in conjunction with...
<div>Covalent organic frameworks (COFs) have emerged as an important class of nano-porous crystallin...
MOFs (1–3) are crystalline materials with a nanoporous, supramolecular structure consisting of metal...
The electronic structure of a class of [Zn<sub>4</sub>O(CO<sub>2</sub>)<sub>6</sub>] based metal–or...
Metal-organic frameworks (MOFs) are porous hybrid organic-inorganic materials, which are usually for...
Metal-organic frameworks (MOF) are fascinating hybrid materials, gained widespread attention from th...
The tetratopic ligand tetrathiafulvalene-tetrabenzoate (H[subscript 4]TTFTB) is used to synthesize Z...
© 2017 The Royal Society of Chemistry. Electronic structure calculations are used to develop design ...
The dielectric behavior of metal–organic frameworks is highly dependent on the polarity of molecules...
Metal–organic framework (MOF) materials have recently been shown to have promising electronic and di...
Two isostructural highly porous metal-organic frameworks, the well-known Cu3(BTC)2 n (BTC = 1,3,5-be...
Metal-organic frameworks (MOFs) are crystalline compounds consisting of metal centers that are joine...
Metal-organic frameworks stand at the frontiers of molecular electronic research because they combin...
Abstract: The binding energy of an electron in a material is a fun-damental characteristic, which de...
Metal-organic frameworks (MOFs), with their crystalline nanoporous three-dimensional structures, hav...
This thesis entails the utilisation of ab initio density functional theory (DFT) in conjunction with...
<div>Covalent organic frameworks (COFs) have emerged as an important class of nano-porous crystallin...
MOFs (1–3) are crystalline materials with a nanoporous, supramolecular structure consisting of metal...
The electronic structure of a class of [Zn<sub>4</sub>O(CO<sub>2</sub>)<sub>6</sub>] based metal–or...
Metal-organic frameworks (MOFs) are porous hybrid organic-inorganic materials, which are usually for...
Metal-organic frameworks (MOF) are fascinating hybrid materials, gained widespread attention from th...
The tetratopic ligand tetrathiafulvalene-tetrabenzoate (H[subscript 4]TTFTB) is used to synthesize Z...
© 2017 The Royal Society of Chemistry. Electronic structure calculations are used to develop design ...
The dielectric behavior of metal–organic frameworks is highly dependent on the polarity of molecules...