International audienceRecently we have demonstrated that the applicability of the Tkatchenko-Scheffler (TS) method for calculating dispersion corrections to density-functional theory can be extended to ionic systems if the Hirshfeld method for estimating effective volumes and charges of atoms in molecules or solids (AIM's) is replaced by its iterative variant [T. Bucko, S. Lebegue, J. Hafner, and J. Angyan, J. Chem. Theory Comput. 9, 4293 (2013)]. The standard Hirshfeld method uses neutral atoms as a reference, whereas in the iterative Hirshfeld (HI) scheme the fractionally charged atomic reference states are determined self-consistently. We show that the HI method predicts more realistic AIM charges and that the TS/HI approach leads to pol...
Molecular crystals are ubiquitous in many areas of science and engineering, including biology and me...
Accurate treatment of the long-range electron correlation energy, including dispersion interactions,...
We extend the previously developed geometrical correction for the inter- and intramolecular basis se...
International audienceThe Tkatchenko-Scheffler method for calculating dispersion correction to stand...
The Tkatchenko–Scheffler method for calculating dispersion correction to standard density-functional...
International audienceThe method proposed by Tkatchenko and Scheffler [Phys. Rev. Lett. 102, 073005 ...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
We introduce a system-independent method to derive effective atomic C6 coefficients and polarizabili...
In this work, a method is described to extend the iterative Hirshfeld-I method, generally used for m...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The Hirshfeld method for the atom in the molecule (AIM) was born from crystallography and relies on ...
The D4 model is presented for the accurate computation of London dispersion interactions in density ...
International audienceVan der Waals (vdW) interactions are important in numerous physical, chemical,...
Atoms in molecules methods that rely on reference promolecular densities typically require that one ...
Molecular crystals are ubiquitous in many areas of science and engineering, including biology and me...
Accurate treatment of the long-range electron correlation energy, including dispersion interactions,...
We extend the previously developed geometrical correction for the inter- and intramolecular basis se...
International audienceThe Tkatchenko-Scheffler method for calculating dispersion correction to stand...
The Tkatchenko–Scheffler method for calculating dispersion correction to standard density-functional...
International audienceThe method proposed by Tkatchenko and Scheffler [Phys. Rev. Lett. 102, 073005 ...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
We introduce a system-independent method to derive effective atomic C6 coefficients and polarizabili...
In this work, a method is described to extend the iterative Hirshfeld-I method, generally used for m...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The Hirshfeld method for the atom in the molecule (AIM) was born from crystallography and relies on ...
The D4 model is presented for the accurate computation of London dispersion interactions in density ...
International audienceVan der Waals (vdW) interactions are important in numerous physical, chemical,...
Atoms in molecules methods that rely on reference promolecular densities typically require that one ...
Molecular crystals are ubiquitous in many areas of science and engineering, including biology and me...
Accurate treatment of the long-range electron correlation energy, including dispersion interactions,...
We extend the previously developed geometrical correction for the inter- and intramolecular basis se...