An ab initio calculation of the energy levels of α-quartz is made using a basis of Gaussian-type orbitals and an ionic potential fitted to sums of exponential-type functions. Two [1010] surfaces are considered, one consisting of a plane of Si and O atoms with dangling bonds and the other having a plane of non-bridging oxygen atoms only. Both ideal surfaces have states in the fundamental gap but the second can be relaxed to eliminate these levels. Perfect stoichiometric dislocations largely have no states in the gap, but structures in which oxygen atoms are allowed to come into close proximity give rise to a multitude of partially filled gap states. © 1985 Taylor & Francis Group, LLC
Monocrystalline (0001) quartz surfaces may present two kinds of imperfections : point defects (surfa...
Ab initio calculations based on density functional theory (DFT) and local density approximation (LDA...
The Si-O bond breaking event in the alpha-quartz at the first triplet (T-1) excitation state is stud...
An ab initio calculation of the energy levels of α-quartz is made using a basis of Gaussian-type orb...
We present an ab initio investigation of the structural and electronic properties of the (0001) alph...
The surface chemistry of silica is strongly affected by the nature of chemically active sites (or de...
Structural and electronic properties of Si termination, O-middle termination, and O-rich termination...
Extrinsic levels, formation energies, and relaxation geometries are calculated ab initio for oxygen ...
α-cristobalite (α-C) is a polymorph of silica, mainly found in space exploration and geochemistry re...
Extrinsic levels, formation energies, and relaxation geometries are calculated ab initio for oxygen ...
The displacement of an oxygen atom in pure alpha quartz is studied via first-principles molecular dy...
A study of the electronic structure ofNquartz, the influence of short range departure from tne.-quar...
The electronic energy structure for the (111)ideal and relaxed surfaces of silicon is calculated by ...
A study of atomic structures and localized symmetrized vibrations in α-quartz with silicon vacancies...
We have investigated the atomic geometries and thermodynamic properties of water related defects in ...
Monocrystalline (0001) quartz surfaces may present two kinds of imperfections : point defects (surfa...
Ab initio calculations based on density functional theory (DFT) and local density approximation (LDA...
The Si-O bond breaking event in the alpha-quartz at the first triplet (T-1) excitation state is stud...
An ab initio calculation of the energy levels of α-quartz is made using a basis of Gaussian-type orb...
We present an ab initio investigation of the structural and electronic properties of the (0001) alph...
The surface chemistry of silica is strongly affected by the nature of chemically active sites (or de...
Structural and electronic properties of Si termination, O-middle termination, and O-rich termination...
Extrinsic levels, formation energies, and relaxation geometries are calculated ab initio for oxygen ...
α-cristobalite (α-C) is a polymorph of silica, mainly found in space exploration and geochemistry re...
Extrinsic levels, formation energies, and relaxation geometries are calculated ab initio for oxygen ...
The displacement of an oxygen atom in pure alpha quartz is studied via first-principles molecular dy...
A study of the electronic structure ofNquartz, the influence of short range departure from tne.-quar...
The electronic energy structure for the (111)ideal and relaxed surfaces of silicon is calculated by ...
A study of atomic structures and localized symmetrized vibrations in α-quartz with silicon vacancies...
We have investigated the atomic geometries and thermodynamic properties of water related defects in ...
Monocrystalline (0001) quartz surfaces may present two kinds of imperfections : point defects (surfa...
Ab initio calculations based on density functional theory (DFT) and local density approximation (LDA...
The Si-O bond breaking event in the alpha-quartz at the first triplet (T-1) excitation state is stud...