Abstract
We proposed a novel kinetic energy decomposition analysis based on information theory. Since the Hirshfeld partitioning for electron densities can be formulated in terms of Kullback-Leibler information deficiency in information theory, a similar partitioning for kinetic energy densities was newly proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules, and can also estimate atomic energies using a correction with viral ratios. A novel kinetic energy decomposition analysis based on information theory is proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules. It can also estimate atomic energies using a correction with viral ratios.
Original language | English |
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Pages (from-to) | 2787-2795 |
Number of pages | 9 |
Journal | Journal of Computational Chemistry |
Volume | 34 |
Issue number | 32 |
DOIs | |
Publication status | Published - 2013 Dec 15 |
Keywords
- Hirshfeld partitioning
- Kullback-Leibler information deficiency
- Weizäcker partitioning
- energy decomposition
- kinetic energy density
- virial ratio
ASJC Scopus subject areas
- Chemistry(all)
- Computational Mathematics