## Abstract Because of conflicting and contradictory classification based on traditional AIM characteristics, the nature of the MnMn bond has been and still is the subject of continuing discussions. To overcome the existing inconsistencies in the interpretation of the nature of this bond, the bond
Chemical structures from the analysis of domain-averaged Fermi holes: Multiple metalmetal bonding in transition metal compounds
✍ Scribed by Robert Ponec; Gleb Yuzhakov; Ramon Carbó-Dorca
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 357 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0192-8651
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The recently proposed approach based on the analysis of domain‐averaged Fermi holes was applied to the study of the nature of metalmetal bonding in transition metal complexes and clusters. The main emphasis was put on the scrutiny of the systems assumed to contain direct multiple metalmetal bonds. The studied systems involve: (1) systems of the type M~2~X~6~ (M = Mo, W, X = CH~3~) anticipated to contain metalmetal triple bonds; (2) the molecule of W~2~Cl~8~^(4−)^ as the representative of the systems with quadruple metalmetal bonding; (3) diatomic molecules Mo~2~ and V~2~ considered as the potential candidates for higher than quadruple metalmetal bonding. Although the resulting picture of bonding has been usually shown to agree with the original expectations based on early simple MO models, some examples were also found in which the conclusions of the reported analysis display dramatic sensitivity to the quality of the wave function used for the generation of the Fermi holes. In addition to this we also report some examples where the original theoretical predictions of multiplicity of metalmetal bonds have to be corrected. © 2003 Wiley Periodicals, Inc. J Comput Chem 24: 1829–1838, 2003
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