Natural localized molecular orbitals
- 15 August 1985
- journal article
- conference paper
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 83 (4) , 1736-1740
- https://doi.org/10.1063/1.449360
Abstract
The method of natural localized molecular orbitals (NLMOs) is presented as a novel and efficient technique for obtaining LMOs for SCF and CI wave functions. It is an extension of the previously developed natural atomic orbital (NAO) and natural bond orbital (NBO) methods, and uses only the information contained in the one-particle density matrix. Results are presented for methane and cytosine to indicate that NLMOs closely resemble LMOs obtained by the Boys and Edmiston–Ruedenberg methods, with the exception that the NLMO procedure automatically preserves the MO σ–π separation in planar molecules. The computation time is modest, generally only a small fraction of the SCF computation time. In addition, the derivation of NLMOs from NBOs gives direct insight into the nature of the LMO ‘‘delocalization tails,’’ thus enhancing the role of LMOs as a bridge between chemical intuition and molecular wave functions.Keywords
This publication has 39 references indexed in Scilit:
- Calculation of localized molecular orbitalsInternational Journal of Quantum Chemistry, 1984
- Treatment of aperiodicity and correlation in polymersInternational Journal of Quantum Chemistry, 1983
- Application of the many‐body perturbation theory by using localized orbitalsInternational Journal of Quantum Chemistry, 1983
- Coupling of internal rotations in propanelike moleculesInternational Journal of Quantum Chemistry, 1982
- Bond–antibond analysis of internal rotation barriers in glyoxal and related molecules: Where INDO failsInternational Journal of Quantum Chemistry, 1981
- Studies of the molecular and electronic structure of dicyclopentadienylberylliumJournal of the American Chemical Society, 1977
- Unconstrained exchange localization and distant orbital tailsThe Journal of Chemical Physics, 1976
- Localized charge distributionsTheoretical Chemistry Accounts, 1975
- Canonical Configurational Interaction ProcedureReviews of Modern Physics, 1960
- N herungsmethode zur L sung des quantenmechanischen Mehrk rperproblemsThe European Physical Journal A, 1930