We report a detailed survey of the calculated bulk properties of zirconia using GGA and meta-GGA functionals (PBE, PBEsol, RPBE, and TPSS), dispersion (Grimme's D2 and D3 approach), and on-site Coulomb repulsion correction (U = 2–8 eV). Structural, elastic, mechanical, and dielectric properties, as well as energetics, electronic structure, and phonon dispersion curves were computed and compared to previous investigations to identify the best DFT approach for a consistent in silico description of zirconia polymorphs. In general, inclusion of dispersion corrections led to only small changes in the calculated properties, whereas DFT+U (U = 2 or 4 eV) reduced the deviations of calculated properties from the experimental results, although deteri...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
The properties of materials at high temperatures are often determined by complex thermodynamic mecha...
We performed plane wave density functional theory (DFT) calculations of formation energies, relaxed ...
We report a detailed survey of the calculated bulk properties of zirconia using GGA and meta-GGA fun...
Zirconia (zirconium dioxide) and hafnia (hafnium dioxide) are binary oxides used in a range of appli...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Zirconia (ZrO2) is a most important substance in materials science and technology due to its wide-ra...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Due to their high melting temperature and low thermal conductivity, zirconia (ZrO2) based ceramics h...
Zirconium dioxide (ZrO2) ceramics are of highly scientific and industrial interest. Since zirconia p...
The material yttria-reinforced zirconia (YSZ) is widely used in biomedical applications and is the l...
Zirconia (ZrO2) is of great importance as a support for systems where high ionic conductivity and me...
Synchrotron x-ray absorption spectra of four zirconia polymorphs (monoclinic, orthorhombic, tetragon...
The crystal thermodynamics of zirconia (ZrO_2) has been investigated using an orthogonal self-consis...
The electronic structure of crystalline ZrO2 and HfO2 in the cubic, tetragonal, and monoclinic phase...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
The properties of materials at high temperatures are often determined by complex thermodynamic mecha...
We performed plane wave density functional theory (DFT) calculations of formation energies, relaxed ...
We report a detailed survey of the calculated bulk properties of zirconia using GGA and meta-GGA fun...
Zirconia (zirconium dioxide) and hafnia (hafnium dioxide) are binary oxides used in a range of appli...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Zirconia (ZrO2) is a most important substance in materials science and technology due to its wide-ra...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Due to their high melting temperature and low thermal conductivity, zirconia (ZrO2) based ceramics h...
Zirconium dioxide (ZrO2) ceramics are of highly scientific and industrial interest. Since zirconia p...
The material yttria-reinforced zirconia (YSZ) is widely used in biomedical applications and is the l...
Zirconia (ZrO2) is of great importance as a support for systems where high ionic conductivity and me...
Synchrotron x-ray absorption spectra of four zirconia polymorphs (monoclinic, orthorhombic, tetragon...
The crystal thermodynamics of zirconia (ZrO_2) has been investigated using an orthogonal self-consis...
The electronic structure of crystalline ZrO2 and HfO2 in the cubic, tetragonal, and monoclinic phase...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
The properties of materials at high temperatures are often determined by complex thermodynamic mecha...
We performed plane wave density functional theory (DFT) calculations of formation energies, relaxed ...