## Abstract Previously determined nonadiabatic wave functions for H~2~^+^ (containing several hundred terms) are analyzed by using natural orbitals. This is the first time that the natural orbital concept has been applied to other than purely electronic wave functions. We find that the natural orbi
Diffuse functions in natural bond orbital analysis
β Scribed by Lionel Goodman; Ronald R. Sauers
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 170 KB
- Volume
- 28
- Category
- Article
- ISSN
- 0192-8651
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β¦ Synopsis
Abstract
We show that diffuse function augmentation of Pople basis sets at the 6β311G RHF and B3LYP levels strongly impact conclusions drawn from natural bond orbital (NBO) analysis. The large spatial extent of high quantum number Rydberg orbitals introduced by augmentation contribute importantly to the valence space of neighboring atoms due to the likely inadequacy of the 311 valence functions. In contrast, lesser anomalies are found for augmentation of double zeta type 6β31G. The energetic anomalies found for bond and antibond NBO descriptions, made nonlocal by augmentation, are most serious for molecules with four or more heavy atoms. For these cases augmentation can lead to nonphysical results. NBO results using Dunningβtype correlation consistent orbitals exhibit much weaker basis set dependence than those using the Pople basis sets.Β© 2006 Wiley Periodicals, Inc. J Comput Chem 2007
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## Abstract A method of expansion of molecular orbital wave functions into valence bond (VB) functions is extended to molecular fragments. The wave function is projected onto a basis of mixed determinants, involving molecular orbitals as well as fragment atomic orbitals, and is further expressed as
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