We estimate the Hubbard parameters for density-functional-theory (DFT) + U calculations of ZrO2, HfO2, TiO2, and NiO based on calibrating the electronic structure obtained from hybrid functional methods. The electronic density of states is used to assess the parameters and the values thus derived are employed for the full electron and phonon dispersion comparisons. The resulting values account for experimental band gaps and electron correlations that are computationally much less demanding to treat within the simpler DFT + U framework than with the typically more accurate yet expensive hybrid functional methods. Limitations of +U scheme is indicated towards describing TiO2 and HfO2 phase-stability
The aim of this project is to become familiar with the Hubbard-corrected energy functionals used in ...
The development of new exchange-correlation functionals within density functional theory means that ...
Study of fundamental physical properties of titanium dioxide (TiO2) is crucial to determine its pote...
We estimate the Hubbard parameters for density-functional-theory (DFT) + U calculations of ZrO2, HfO...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
First principle calculations using density functional theory (DFT) and full-potential linearized aug...
Conventional density functionals with either the local density approximation (LDA) or the generalize...
The effect of the amount of Hartree-Fock mixing parameter (α) and of the screening parameter (w) def...
First-principles calculations combined with Hubbard U correction based on Density Functional Theory ...
The optical properties of titanium dioxide (TiO2) in rutile, anatase and brookite phases were invest...
Structural and mechanical properties in rutile (tetragonal) phases of SnO 2 and TiO 2 are investigat...
The electronic structure of crystalline ZrO2 and HfO2 in the cubic, tetragonal, and monoclinic phase...
The electronic structure of crystalline ZrO(2) and HfO(2) in the cubic, tetragonal, and monoclinic p...
International audienceTo get updated references on the structural, electronic, and vibration propert...
AbstractThe optical properties of titanium dioxide (TiO2) in rutile, anatase and brookite phases wer...
The aim of this project is to become familiar with the Hubbard-corrected energy functionals used in ...
The development of new exchange-correlation functionals within density functional theory means that ...
Study of fundamental physical properties of titanium dioxide (TiO2) is crucial to determine its pote...
We estimate the Hubbard parameters for density-functional-theory (DFT) + U calculations of ZrO2, HfO...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
First principle calculations using density functional theory (DFT) and full-potential linearized aug...
Conventional density functionals with either the local density approximation (LDA) or the generalize...
The effect of the amount of Hartree-Fock mixing parameter (α) and of the screening parameter (w) def...
First-principles calculations combined with Hubbard U correction based on Density Functional Theory ...
The optical properties of titanium dioxide (TiO2) in rutile, anatase and brookite phases were invest...
Structural and mechanical properties in rutile (tetragonal) phases of SnO 2 and TiO 2 are investigat...
The electronic structure of crystalline ZrO2 and HfO2 in the cubic, tetragonal, and monoclinic phase...
The electronic structure of crystalline ZrO(2) and HfO(2) in the cubic, tetragonal, and monoclinic p...
International audienceTo get updated references on the structural, electronic, and vibration propert...
AbstractThe optical properties of titanium dioxide (TiO2) in rutile, anatase and brookite phases wer...
The aim of this project is to become familiar with the Hubbard-corrected energy functionals used in ...
The development of new exchange-correlation functionals within density functional theory means that ...
Study of fundamental physical properties of titanium dioxide (TiO2) is crucial to determine its pote...