Extremely localized molecular orbitals (ELMOs), namely orbitals strictly localized on molecular fragments, are easily transferable from one molecule to another one. Hence, they provide a natural way to set up the electronic structure of large molecules using a data base of orbitals obtained from model molecules. However, this procedure obviously increases the energy with respect to a traditional MO calculation. To gain accuracy, it is important to introduce a partial electron delocalization. This can be carried out by defining proper optimal virtual orbitals that supply an efficient set for nonorthogonal configurations to be employed in VB-like expansions. © 2005 Wiley Periodicals, Inc.

Optimal virtual orbitals to relax wave functions built up with transferred extremely localized molecular orbitals

Genoni A.;
2005-01-01

Abstract

Extremely localized molecular orbitals (ELMOs), namely orbitals strictly localized on molecular fragments, are easily transferable from one molecule to another one. Hence, they provide a natural way to set up the electronic structure of large molecules using a data base of orbitals obtained from model molecules. However, this procedure obviously increases the energy with respect to a traditional MO calculation. To gain accuracy, it is important to introduce a partial electron delocalization. This can be carried out by defining proper optimal virtual orbitals that supply an efficient set for nonorthogonal configurations to be employed in VB-like expansions. © 2005 Wiley Periodicals, Inc.
2005
Extremely localized molecular orbitals
Molecular fragments
Optizmal virtual orbitals
Transferability
Valence-bond approach
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1269567
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