A direct application of the Hirshfeld atomic partitioning (HAP) scheme is implemented for molecular electron momentum densities (EMDs). The momentum density contributions of individual atoms in diverse molecular systems are analyzed along with their topographical features and the kinetic energies of the atomic partitions. The proposed p-space HAP-based charge scheme does seem to possess the desirable attributes expected of any atoms in molecules partitioning. In addition to this, the main strength of the p-space HAP is the exact knowledge of the kinetic energy functional and the inherent ease in computing the kinetic energy. The charges derived from HAP in momentum space are found to match chemical intuition and the generally known chemical...
Topographies of ground-state electron-momentum densities (EMD's), γ(p), are studied for a numbe...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
The Hirshfeld method for the atom in the molecule (AIM) was born from crystallography and relies on ...
The Hirshfeld atom-in-molecule (AIM) approach was introduced several decades ago1 and raised a lot o...
The scope of the quasiclassical procedure previously used by us for estimating atomic-electron momen...
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...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
Topographies of ground-state electron-momentum densities (EMD's), γ(p), are studied for a numbe...
Topographies of ground-state electron-momentum densities (EMD's), γ(p), are studied for a numbe...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
The computational approach to the Hirshfeld [Theor. Chim. Acta 44, 129 (1977)] atom in a molecule is...
The Hirshfeld method for the atom in the molecule (AIM) was born from crystallography and relies on ...
The Hirshfeld atom-in-molecule (AIM) approach was introduced several decades ago1 and raised a lot o...
The scope of the quasiclassical procedure previously used by us for estimating atomic-electron momen...
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...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
For the development of ab initio derived force fields, atomic charges must be computed from electron...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
Topographies of ground-state electron-momentum densities (EMD's), γ(p), are studied for a numbe...
Topographies of ground-state electron-momentum densities (EMD's), γ(p), are studied for a numbe...
An implementation of the Hirshfeld (HD) and Hirshfeld-Iterated (HD-I) atomic charge density partitio...
For the development of ab initio derived force fields, atomic charges must be computed from electron...