The predicted infrared spectrum and the structure of the isolated UF5 molecule
- 1 August 1976
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 65 (3) , 969-976
- https://doi.org/10.1063/1.433169
Abstract
The infrared absorption spectrum by the fundamental modes of UF5 is calculated using force constants transferred from UF6 to predict the wavenumbers and using the F atom polar tensor from CH3F to predict the intensities. Calculations are made for several assumed geometrical configurations of UF5. Comparison of the predicted spectra with the recently observed spectrum, in the UF-stretching region, of a photolysis product of UF6 isolated in an Ar matrix suggests strongly that the structure is square pyramidal (C4v) with the U atom above the F atom equatorial plane. Although the model for the intensities is simple, the calculated spectrum is expected to predict the correct order of magnitude of the intensities of the fundamentals, first overtones, and binary combination bands of UF5, and the approximate wavenumbers for the expected absorption. Some comparisons are given between the calculations for the several structures of UF5 and observed spectra of other XF5 molecules, including PF5, BrF5, and IF5.Keywords
This publication has 12 references indexed in Scilit:
- Dipole moment derivatives and infrared intensities. II. Polar tensors in methyl halide moleculesThe Journal of Chemical Physics, 1976
- Vibrational spectroscopy of matrix-isolated UF6 and UF5The Journal of Chemical Physics, 1976
- Vibrational intensities—XXIII. The effect of anharmonicity on the temperature dependence of integrated band intensitiesSpectrochimica Acta Part A: Molecular Spectroscopy, 1976
- Vibrational spectrum and force field of uranium hexafluorideThe Journal of Chemical Physics, 1974
- Beiträge zur Chemie der Uranfluoride und ‐oxidfluoride. II. Darstellung und Schwingungsspektren von α‐ und β‐UranpentafluoridZeitschrift für anorganische und allgemeine Chemie, 1973
- Higher-order vibration intensities of polyatomic moleculesJournal of Molecular Spectroscopy, 1973
- The electron-pair repulsion model for molecular geometryJournal of Chemical Education, 1970
- Vibrational Spectra and Valence Force Constants of the Square-Pyramidal Molecules—XeOF4, IF5, BrF5, and ClF5The Journal of Chemical Physics, 1965
- Infrared Spectrum of Bromine PentafluorideThe Journal of Chemical Physics, 1962
- The Infrared Spectra of PF3, POF3, and PF5The Journal of Chemical Physics, 1952