Vibrational frequency shifts in NeHF and ArHF complexes
- 10 April 1994
- journal article
- research article
- Published by Taylor & Francis in Molecular Physics
- Vol. 81 (5), 1225-1237
- https://doi.org/10.1080/00268979400100821
Abstract
The hydrogen fluoride vibrational frequency shift in the NeHF and ArHF complexes in their linear equilibrium configurations has been calculated using a theoretical model derived from quantum mechanical perturbation theory and involving first and second derivatives of the inert gas interaction energy with respect to displacements of the HF internuclear distance from equilibrium in the free molecule. These derivatives were obtained from ab initio calculations at the self-consistent field (SCF) and Møller-Plesset (MP)2 levels of theory. The calculated shifts are compared with harmonic frequency shifts computed from ab initio analytic second derivatives at the SCF and MP2 levels of theory. The frequency shifts for these complexes obtained by these two theoretical approaches are in reasonable agreement for ArHF but differ for NeHF whose shift is nearly zero. The basis set dependence of the shift was investigated at the SCF level for NeHF; large basis sets are required to reproduce the correct sign of the shift. The MP2 predictions for linear ArHF overestimate the experimental red shift; this discrepancy is attributed to the variation of the shift with vibrational bend angle.Keywords
This publication has 35 references indexed in Scilit:
- The OH stretching frequency in liquid water simulations: the classical errorChemical Physics Letters, 1992
- On the solvent frequency shiftMolecular Physics, 1991
- Slit jet infrared spectroscopy of NeHF complexes: Internal rotor and J-dependent predissociation dynamicsThe Journal of Chemical Physics, 1989
- Infrared Spectrum of NeHFPhysical Review Letters, 1988
- High-resolution infrared spectroscopy of weakly bound molecular complexesChemical Reviews, 1988
- The near-infrared spectrum of NeHClChemical Physics Letters, 1988
- Infrared laser photodissociation and spectroscopy of van der Waals moleculesThe Journal of Physical Chemistry, 1986
- A theory of frequency, intensity and band-width changes due to solvents in infra-red spectroscopyProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1960
- Solvent effects in vibrational spectroscopyTransactions of the Faraday Society, 1960
- Solvent effects in infra-red spectroscopyProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1958