It is shown that molecular electrostatic potentials obtained from iterative or self-consistent Hirshfeld atomic point charges agree remarkably well with the ab initio computed electrostatic potentials. The iterative Hirshfeld scheme performs nearly as well as electrostatic potential derived atomic charges, having the advantage of allowing the definition of the atom in the molecule, rather than just yielding charges. The quality of the iterative Hirshfeld charges for computing electrostatic potentials is examined for a large set of molecules and compared to other commonly used techniques for population analysis
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
The problem of deriving atomic charges from the results of ab Initio MO calculations has been studie...
We propose a new screened charge method for calculating partial atomic charges in molecules by elect...
It is shown that molecular electrostatic potentials obtained from iterative or self-consistent Hirsh...
The Electrostatic Potential is of great importance in chemical reactivity since it is closely relate...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
A new viewpoint on iterative Hirshfeld charges is presented, whereby the atomic populations obtained...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The Hirshfeld atom-in-molecule (AIM) approach was introduced several decades ago1 and raised a lot o...
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 ...
We develop a variational procedure for the iterative Hirshfeld (HI) partitioning scheme. The main pr...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Motivated by the Legendre expansion of the electrostatic potential (ESP), we propose a method for ob...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
The problem of deriving atomic charges from the results of ab Initio MO calculations has been studie...
We propose a new screened charge method for calculating partial atomic charges in molecules by elect...
It is shown that molecular electrostatic potentials obtained from iterative or self-consistent Hirsh...
The Electrostatic Potential is of great importance in chemical reactivity since it is closely relate...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
A new viewpoint on iterative Hirshfeld charges is presented, whereby the atomic populations obtained...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The Hirshfeld atom-in-molecule (AIM) approach was introduced several decades ago1 and raised a lot o...
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 ...
We develop a variational procedure for the iterative Hirshfeld (HI) partitioning scheme. The main pr...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Motivated by the Legendre expansion of the electrostatic potential (ESP), we propose a method for ob...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
The problem of deriving atomic charges from the results of ab Initio MO calculations has been studie...
We propose a new screened charge method for calculating partial atomic charges in molecules by elect...