English

Empirical LCAO parameters for $\pi$ molecular orbitals in planar organic molecules

Chemical Physics 2009-08-08 v2 Biological Physics

Abstract

We present a parametrization within a simplified LCAO model (a type of Hueckel model) for the description of π\pi molecular orbitals in organic molecules containing π\pi-bonds between carbon, nitrogen, or oxygen atoms with sp2sp^2 hybridization, which we show to be quite accurate in predicting the energy of the highest occupied π\pi orbital and the first π\pi-π\pi* transition energy for a large set of organic compounds. We provide four empirical parameter values for the diagonal matrix elements of the LCAO description, corresponding to atoms of carbon, nitrogen with one pzp_z electron, nitrogen with two pzp_z electrons, and oxygen. The bond-length dependent formula (proportional to 1/d21/d^2) of Harrison is used for the non-diagonal matrix elements between neighboring atoms. The predictions of our calculations have been tested against available experimental results in more than sixty organic molecules, including benzene and its derivatives, polyacenes, aromatic hydrocarbons of various geometries, polyenes, ketones, aldehydes, azabenzenes, nucleic acid bases and others. The comparison is rather successful, taking into account the small number of parameters and the simplicity of the LCAO method, involving only pzp_z atomic orbitals, which leads even to analytical calculations in some cases.

Cite

@article{arxiv.0808.3984,
  title  = {Empirical LCAO parameters for $\pi$ molecular orbitals in planar organic molecules},
  author = {Laurence Hawke and George Kalosakas and Constantinos Simserides},
  journal= {arXiv preprint arXiv:0808.3984},
  year   = {2009}
}

Comments

20 pages, 6 tables, 65 planar organic molecules

R2 v1 2026-06-21T11:14:51.667Z