In semi-cmpiricnl molcculnr orbital cnlculntions it is frcqucntly desirable to include in the basis set of atomic orbitals low energy virtual atomic orbitnls. Criteria for representing the spectroscopically obscrvcd virtual orbitxls by single Slnter-type orbitnls @TO) are discussed. Representations
Extracting polarized atomic orbitals from molecular orbital calculations
โ Scribed by Michael S. Lee; Martin Head-Gordon
- Publisher
- John Wiley and Sons
- Year
- 2000
- Tongue
- English
- Weight
- 393 KB
- Volume
- 76
- Category
- Article
- ISSN
- 0020-7608
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โฆ Synopsis
We present a class of methods for extracting a polarized atomic orbital ลฝ . ลฝ . EPAO minimal basis set from a converged molecular orbital MO calculation. Unlike minimal basis sets obtained from previous approaches, EPAOs rigorously contain the occupied molecular orbital space. EPAOs achieve this exactness because their spatial extent is not restricted. Nonetheless, EPAOs are optimally localized with respect to a localization criterion and are essentially single-centered. EPAOs provide an alternative scheme for partitioning the electron density into atomic subspaces. Therefore, they can be used to determine atomic and chemical group properties such as charge populations. Since EPAOs provide a compact description to the occupied space, they may have other computational applications such as in local correlation methods. Additionally, the EPAOs give a description of valence antibonding orbitals that may be appropriate for nondynamical electron correlation.
๐ SIMILAR VOLUMES
Atomic orbital energy matching is a valid criterion of bond strength only for haifdilkd molec&xr orbitals. Doubly occupied molecular orbitals built from atomic orbital9 differing in energies may be strongly bonding due to high ionic bond-orders.