We describe a novel approach for the calculation of local electric dipole moments for periodic systems. Since the position operator is ill-defined in periodic systems, maximally localized Wannier functions based on the Berry-phase approach are usually employed for the evaluation of local contributions to the total electric dipole moment of the system. We propose an alternative approach: within a subsystem-density functional theory based embedding scheme, subset electric dipole moments are derived without any additional localization procedure, both for hybrid and non-hybrid exchange–correlation functionals. This opens the way to a computationally efficient evaluation of local electric dipole moments in (molecular) periodic systems as well as...
In this article we review time-dependent density functional theory for calculating the static and fr...
The methods for the experimental determination of electric dipole moment of molecules in solution fr...
Homogeneous electric fields are treated within density functional calculations with periodic boundar...
Within periodic boundary conditions, the traditional quantum mechanical position operator is ill-def...
Within periodic boundary conditions, the traditional quantum mechanical position operator is ill-def...
Abstract: We propose here an evaluation of chemically intuitive distributed electrostatic moments us...
The molecular dipole moment (mu) is a central quantity in chemistry. It is essential in predicting i...
This work is devoted to extending Kohn-Sham density functional theory (KS-DFT) with Gaussian-type or...
We report a linear combination of atomic dipole (LCAD) method for calculating the bond dipole moment...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Elegant expressions are derived for the computation of dipole and quadrupole moments of molecules us...
We present a systematically improvable density fitting scheme designed for accurate Coulomb potentia...
In this article we review time-dependent density functional theory for calculating the static and fr...
In this article we review time-dependent density functional theory for calculating the static and fr...
The methods for the experimental determination of electric dipole moment of molecules in solution fr...
Homogeneous electric fields are treated within density functional calculations with periodic boundar...
Within periodic boundary conditions, the traditional quantum mechanical position operator is ill-def...
Within periodic boundary conditions, the traditional quantum mechanical position operator is ill-def...
Abstract: We propose here an evaluation of chemically intuitive distributed electrostatic moments us...
The molecular dipole moment (mu) is a central quantity in chemistry. It is essential in predicting i...
This work is devoted to extending Kohn-Sham density functional theory (KS-DFT) with Gaussian-type or...
We report a linear combination of atomic dipole (LCAD) method for calculating the bond dipole moment...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molec...
Elegant expressions are derived for the computation of dipole and quadrupole moments of molecules us...
We present a systematically improvable density fitting scheme designed for accurate Coulomb potentia...
In this article we review time-dependent density functional theory for calculating the static and fr...
In this article we review time-dependent density functional theory for calculating the static and fr...
The methods for the experimental determination of electric dipole moment of molecules in solution fr...
Homogeneous electric fields are treated within density functional calculations with periodic boundar...