The insertion and diffusion energies of oxygen in presence of vacancies in nickel are studied by using the first-principle projector augmented waves (PAW). When the oxygen atom is located in a substitution site, the formation of a vacancy-oxygen pair is observed. Furthermore, we show that the formation of divacancies allows the oxygen atom to migrate more easily in the metal. A model for the migration process of the three-defect system is proposed. Finally, thermal expansion effects are included in our study; it is shown that temperature effects emphasize the diffusion
High-purity polycrystalline nickel foils have been oxidized at 1000°C in laboratory air before being...
We have performed density-functional theory calculations in conjunction with the climbing image nudg...
Oxygen vacancies in metal oxides are known to determine their chemistry and physics. The properties ...
Within the framework of density functional theory using the projector augmented-wave (PAW) method, w...
The energetic properties of the divacancy defect in fcc nickel are studied by ab initio calculations...
Combining thermodynamic concepts with first-principles calculations, we study the solubility of oxyg...
In this study, the coefficients of diffusion of oxygen in nickel-based alloys are determined by atom...
The first-principles calculations of the diffusion processes of oxygen in pure Ni and Ni-Cr binary a...
Solubility and diffusivity of interstitials in Ni is of prime importance to understand and quantify ...
Nickel and nickel base alloys have been widely used as structural materials in nuclear power systems...
We examine in this work the potential and the functional to be used in a density functional theory a...
We studied the diffusion of charged vacancies in nickel oxide (NiO) crystal using the first-principl...
By using a first-principles method employing the local density approximation plus Hubbard parameter ...
A database of thermodynamic solubility energies of impurities and defects in solid solution in fcc-n...
Nickel-base alloys such as alloy 600 (Ni-16Cr-9Fe) are known to exhibit intergranular stress corrosi...
High-purity polycrystalline nickel foils have been oxidized at 1000°C in laboratory air before being...
We have performed density-functional theory calculations in conjunction with the climbing image nudg...
Oxygen vacancies in metal oxides are known to determine their chemistry and physics. The properties ...
Within the framework of density functional theory using the projector augmented-wave (PAW) method, w...
The energetic properties of the divacancy defect in fcc nickel are studied by ab initio calculations...
Combining thermodynamic concepts with first-principles calculations, we study the solubility of oxyg...
In this study, the coefficients of diffusion of oxygen in nickel-based alloys are determined by atom...
The first-principles calculations of the diffusion processes of oxygen in pure Ni and Ni-Cr binary a...
Solubility and diffusivity of interstitials in Ni is of prime importance to understand and quantify ...
Nickel and nickel base alloys have been widely used as structural materials in nuclear power systems...
We examine in this work the potential and the functional to be used in a density functional theory a...
We studied the diffusion of charged vacancies in nickel oxide (NiO) crystal using the first-principl...
By using a first-principles method employing the local density approximation plus Hubbard parameter ...
A database of thermodynamic solubility energies of impurities and defects in solid solution in fcc-n...
Nickel-base alloys such as alloy 600 (Ni-16Cr-9Fe) are known to exhibit intergranular stress corrosi...
High-purity polycrystalline nickel foils have been oxidized at 1000°C in laboratory air before being...
We have performed density-functional theory calculations in conjunction with the climbing image nudg...
Oxygen vacancies in metal oxides are known to determine their chemistry and physics. The properties ...