The last 20 years of force field development have shown that even well parametrized classical models need to at least approximate the dielectric response of molecular systems—based, e.g., on atomic polarizabilities—in order to correctly render their structural and dynamic properties. Yet, despite great advances most approaches tend to be based on ad hoc assumptions and often insufficiently capture the dielectric response of the system to external perturbations, such as, e.g., charge carriers in semiconducting materials. A possible remedy was recently introduced with the atom-condensed Kohn–Sham density-functional theory approximated to second order (ACKS2), which is fully derived from first principles. Unfortunately, specifically its relian...
To interpret ultrafast dynamics experiments on large molecules, computer simulation is required due ...
Traditionally, a polarizable force field (PFF) is a classical model for the local electronic linear ...
A computationally efficient molecular dynamics implementation of a polarizable force field parametri...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
A frequency-dependent extension of the polarizable force field “Atom-Condensed Kohn–Sham density fu...
This is a preliminary study toward implementation of analytic density functional response approach f...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Theoretical calculations of molecular properties can assist experimental design of moleculeswith int...
Theoretical calculations of molecular properties can assist experimental design of moleculeswith int...
Abstract: We present an overview of the energy functions used in two Anisotropic Polarizable Molecul...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
This is a collection of input and output files for the publication below. Abstract: To interpret U...
Molecular-mechanical (MM) force fields are mathematical functions that map the geometry of a molecul...
To interpret ultrafast dynamics experiments on large molecules, computer simulation is required due ...
Traditionally, a polarizable force field (PFF) is a classical model for the local electronic linear ...
A computationally efficient molecular dynamics implementation of a polarizable force field parametri...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
A frequency-dependent extension of the polarizable force field “Atom-Condensed Kohn–Sham density fu...
This is a preliminary study toward implementation of analytic density functional response approach f...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Theoretical calculations of molecular properties can assist experimental design of moleculeswith int...
Theoretical calculations of molecular properties can assist experimental design of moleculeswith int...
Abstract: We present an overview of the energy functions used in two Anisotropic Polarizable Molecul...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
This is a collection of input and output files for the publication below. Abstract: To interpret U...
Molecular-mechanical (MM) force fields are mathematical functions that map the geometry of a molecul...
To interpret ultrafast dynamics experiments on large molecules, computer simulation is required due ...
Traditionally, a polarizable force field (PFF) is a classical model for the local electronic linear ...
A computationally efficient molecular dynamics implementation of a polarizable force field parametri...