Literature DB >> 26606225

Bonding Conundrums in the C2 Molecule: A Valence Bond Study.

Peifeng Su1, Jifang Wu1, Junjing Gu1, Wei Wu1, Sason Shaik1, Philippe C Hiberty1.   

Abstract

The ab initio VB study for the electronic structure of the C2 molecule in the ground state is presented in this work. VB calculations involving 78 chemically relevant VB structures can predict the bonding energy of C2 quite well. Sequentially, a VBCIS calculation provides spectroscopic parameters that are very close to full CI calculated values in the same basis set. Furthermore, the analysis of the bonding scheme shows that a triply bonded structure is the major one in terms of weights, and the lowest in energy at the equilibrium distance. The second structure in terms of weights is an ethylene-like structure, displaying a σ + π double bond. The structure with two suspended π bonds but no σ bond contributes only marginally to the ground state. This ordering of weights for the VB structures describing the C2 molecule is shown to be consistent with the shape of the molecular orbitals and with the multireference character of the ground state. With the triply bonded bonding scheme, the natures of the π and σ bonds are investigated, and then the corresponding "in situ" bond strengths are estimated. The contribution of the covalent-ionic resonance energy to π and σ bonding is revealed and discussed.

Entities:  

Year:  2010        PMID: 26606225     DOI: 10.1021/ct100577v

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  9 in total

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4.  The dicarbon bonding puzzle viewed with photoelectron imaging.

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8.  Latent harmony in dicarbon between VB and MO theories through orthogonal hybridization of 3σg and 2σu.

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9.  Substituent Effects on the Stability of Thallium and Phosphorus Triple Bonds: A Density Functional Study.

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  9 in total

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