We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacancies and Th doping, using first-principles density functional theory calculations based on pseudopotentials and a plane wave basis. We find a significantly enhanced static dielectric response in zirconia with Th doping and introduction of oxygen vacancies. Softening of the phonon modes and changes in the effective charges on atoms are responsible for the enhanced dielectric response of doped samples compared to pure zirconia
Oxygen ionic conductivity through zirconia (ZrO2) is essential to the performance of solid oxide fue...
The role of divalent dopant cations such as Ca and Mg in phase stabilization of ZrO2 has been demons...
The electronic and ionic conductivities of ZrO2 were determined as a func-tion of temperature, oxyge...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
Zr doping in ceria (CeO2) results in enhanced static dielectric response compared to pure ceria. On ...
Zr doping in ceria (CeO2) results in enhanced static dielectric response compared to pure ceria. On ...
Using the variational density-functional perturbation theory, we investigate the dynamical and diele...
We investigate structural, electronic, dynamical, and dielectric properties of zircon (ZrSiO4) withi...
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...
The atomic and electronic structures of zirconia are calculated within density functional theory, an...
In this paper, we study the effect of iron doping in zirconia using both theoretical and experimenta...
Monoclinic ZrO2 has recently emerged as a new highly efficient material for the photovoltaic and pho...
Oxygen ionic conductivity through zirconia (ZrO2) is essential to the performance of solid oxide fue...
The role of divalent dopant cations such as Ca and Mg in phase stabilization of ZrO2 has been demons...
The electronic and ionic conductivities of ZrO2 were determined as a func-tion of temperature, oxyge...
We determine the electronic properties and dielectric response of zirconia (ZrO2) with oxygen vacanc...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
The authors determine electronic properties, structural stability, and dielectric response of zircon...
Zr doping in ceria (CeO2) results in enhanced static dielectric response compared to pure ceria. On ...
Zr doping in ceria (CeO2) results in enhanced static dielectric response compared to pure ceria. On ...
Using the variational density-functional perturbation theory, we investigate the dynamical and diele...
We investigate structural, electronic, dynamical, and dielectric properties of zircon (ZrSiO4) withi...
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...
The atomic and electronic structures of zirconia are calculated within density functional theory, an...
In this paper, we study the effect of iron doping in zirconia using both theoretical and experimenta...
Monoclinic ZrO2 has recently emerged as a new highly efficient material for the photovoltaic and pho...
Oxygen ionic conductivity through zirconia (ZrO2) is essential to the performance of solid oxide fue...
The role of divalent dopant cations such as Ca and Mg in phase stabilization of ZrO2 has been demons...
The electronic and ionic conductivities of ZrO2 were determined as a func-tion of temperature, oxyge...