The role of divalent dopant cations such as Ca and Mg in phase stabilization of ZrO2 has been demonstrated experimentally, with Mg emerging as a crucial dopant ion because of its ability to enhance the photocatalytic properties of ZrO2. To provide a theoretical basis for these experimental observations, the modifications of the crystal and electronic structure of the monoclinic phase of zirconia, m-ZrO2, upon doping with Mg have been studied at the atomic level using Density Functional Theory method. Additionally, the effect of dopant ionic radius on the electronic properties has been demonstrated by doping with Ca, which is isoelectronic with Mg. On 6.25 % doping, a structural distortion of the monoclinic crystal structure towards a tetrag...
We report first principles calculations of the electronic and elastic properties of yttria-stabilize...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
Density-functional theory calculations are performed to investigate the electronic and vibrational d...
The atomic and electronic structures of zirconia are calculated within density functional theory, an...
Using first principle calculations, the effect of Ce with different doping concentrations in the net...
Zirconia (ZrO2) is of great importance as a support for systems where high ionic conductivity and me...
Abstract The electronic structures and optical properties of the monoclinic ZrO2 (m-ZrO2) are invest...
A combination of experiments and ab initio quantum-mechanical calculations has been applied to exami...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
Monoclinic ZrO2 has recently emerged as a new highly efficient material for the photovoltaic and pho...
We report first principles calculations of the electronic and elastic properties of yttriastabilized ...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
We report first principles calculations of the electronic and elastic properties of yttria-stabilize...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
Density-functional theory calculations are performed to investigate the electronic and vibrational d...
The atomic and electronic structures of zirconia are calculated within density functional theory, an...
Using first principle calculations, the effect of Ce with different doping concentrations in the net...
Zirconia (ZrO2) is of great importance as a support for systems where high ionic conductivity and me...
Abstract The electronic structures and optical properties of the monoclinic ZrO2 (m-ZrO2) are invest...
A combination of experiments and ab initio quantum-mechanical calculations has been applied to exami...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
Monoclinic ZrO2 has recently emerged as a new highly efficient material for the photovoltaic and pho...
We report first principles calculations of the electronic and elastic properties of yttriastabilized ...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
We report first principles calculations of the electronic and elastic properties of yttria-stabilize...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
Density-functional theory calculations are performed to investigate the electronic and vibrational d...