The D4 model is presented for the accurate computation of London dispersion interactions in density functional theory approximations (DFT-D4) and generally for atomistic modeling methods. In this successor to the DFT-D3 model, the atomic coordination-dependent dipole polarizabilities are scaled based on atomic partial charges which can be taken from various sources. For this purpose, a new charge-dependent parameter-economic scaling function is designed. Classical charges are obtained from an atomic electronegativity equilibration procedure for which efficient analytical derivatives are developed. A numerical Casimir-Polder integration of the atom-in-molecule dynamic polarizabilities yields charge- and geometry-dependent dipole-dipole dispe...
In density functional theory-based symmetry-adapted perturbation theory (DFT-SAPT) interaction energ...
While density functional theory (DFT) allows accurate quantum mechanical simulations from first prin...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
ConspectusQuantum chemical methods are nowadays able to determine properties of larger chemical syst...
ConspectusQuantum chemical methods are nowadays able to determine properties of larger chemical syst...
Conventional density functional theory (DFT) fails to describe accurately the London dispersion esse...
The problem of dispersion interaction in the DFT is reviewed, followed by a systematic study of the ...
Abstract: Partial atomic charges provide the most widely used model for molecular charge polarizatio...
International audienceThe Tkatchenko-Scheffler method for calculating dispersion correction to stand...
Szalewicz, KrzysztofDensity Functional Theory (DFT), in various local and semilocal approximations, ...
Strictly ab initio calculations of the dispersion energy are unfeasible in practice but for the smal...
In density functional theory-based symmetry-adapted perturbation theory (DFT-SAPT) interaction energ...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
Polarizabilities and London dispersion forces are important to many chemical processes. Leading term...
In density functional theory-based symmetry-adapted perturbation theory (DFT-SAPT) interaction energ...
While density functional theory (DFT) allows accurate quantum mechanical simulations from first prin...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
ConspectusQuantum chemical methods are nowadays able to determine properties of larger chemical syst...
ConspectusQuantum chemical methods are nowadays able to determine properties of larger chemical syst...
Conventional density functional theory (DFT) fails to describe accurately the London dispersion esse...
The problem of dispersion interaction in the DFT is reviewed, followed by a systematic study of the ...
Abstract: Partial atomic charges provide the most widely used model for molecular charge polarizatio...
International audienceThe Tkatchenko-Scheffler method for calculating dispersion correction to stand...
Szalewicz, KrzysztofDensity Functional Theory (DFT), in various local and semilocal approximations, ...
Strictly ab initio calculations of the dispersion energy are unfeasible in practice but for the smal...
In density functional theory-based symmetry-adapted perturbation theory (DFT-SAPT) interaction energ...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
Polarizabilities and London dispersion forces are important to many chemical processes. Leading term...
In density functional theory-based symmetry-adapted perturbation theory (DFT-SAPT) interaction energ...
While density functional theory (DFT) allows accurate quantum mechanical simulations from first prin...
We present an improved electronic linear response model to incorporate polarization and charge-trans...