The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are reviewed in the context of spin-density-functional theory and are used to highlight the assumption of symmetry between electron addition and subtraction that underlies the corrected Koopmans approach of Tozer and De Proft (TDP) for computing electron affinities. The issue of symmetry is then investigated in a systematic study of atomic electron affinities, comparing TDP affinities with those from a conventional Koopmans evaluation and electronic energy differences. Although it cannot compete with affinities determined from energy differences, the TDP expression yields results that are a significant improvement over those from the conventional Ko...
The treatment of atomic anions with Kohn–Sham density functional theory (DFT) has long been controve...
While most molecules and solids are spin-unpolarized, most chemically-active atoms are partly spin-p...
Plots of electronic energy vs electron number, determined using approximate density functional theor...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
A simple density functional theory (DFT) scheme is proposed for estimating negative vertical electro...
We evaluate the accuracy of electron densities and quasiparticle energy gaps given by hybrid functio...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
We evaluate the accuracy of electron densities and quasiparticle energy gaps given by hybrid functio...
The computation of electron attachment energies (electron affinities) was implemented in connection ...
The chemical-binding properties of atoms belonging to the first three rows of the Periodic Table are...
ABSTRACT Most approximate density functionals do not bind small atomic anions because of large self-...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
Density functional theory (DFT)} is a widely used technique for electronic structure calculations. I...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
The treatment of atomic anions with Kohn–Sham density functional theory (DFT) has long been controve...
While most molecules and solids are spin-unpolarized, most chemically-active atoms are partly spin-p...
Plots of electronic energy vs electron number, determined using approximate density functional theor...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
A simple density functional theory (DFT) scheme is proposed for estimating negative vertical electro...
We evaluate the accuracy of electron densities and quasiparticle energy gaps given by hybrid functio...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
We evaluate the accuracy of electron densities and quasiparticle energy gaps given by hybrid functio...
The computation of electron attachment energies (electron affinities) was implemented in connection ...
The chemical-binding properties of atoms belonging to the first three rows of the Periodic Table are...
ABSTRACT Most approximate density functionals do not bind small atomic anions because of large self-...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
Density functional theory (DFT)} is a widely used technique for electronic structure calculations. I...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
The treatment of atomic anions with Kohn–Sham density functional theory (DFT) has long been controve...
While most molecules and solids are spin-unpolarized, most chemically-active atoms are partly spin-p...
Plots of electronic energy vs electron number, determined using approximate density functional theor...