Calculation of Energy Levels for Internal Torsion and Over-All Rotation. III
- 1 July 1959
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 31 (1) , 91-108
- https://doi.org/10.1063/1.1730343
Abstract
A general treatment of hindered internal rotation is given for molecules that can be regarded as a rigid symmetric top attached to a rigid frame which may be completely asymmetric. The perturbation approach developed in previous papers is simplified and extended by use of a method which relates the perturbation coefficients to the exact energy levels obtainable for the limiting case of two coaxial symmetric tops. Tables are given which provide the torsional energy levels and the perturbation coefficients through fourth order in the coupling between internal and over-all rotation. The tables apply to the lowest three groups of torsional states for a potential barrier of the form V(α)=12VN(1−cosNα)+12V2N(1−cos2Nα), where the periodicity N is arbitrary and O<̄V2N/VN<5%. The range of validity of the approximations is examined, and it is concluded that in most applications the previous second order treatment yields reliable values of the barrier height. Situations in which higher order corrections affect microwave spectra are illustrated by a reanalysis of the data for methyl silane and acetaldehyde.Keywords
This publication has 41 references indexed in Scilit:
- Proton Magnetic Resonance of the CH3 Group. IV. Calculation of the Tunneling Frequency and of T1 in SolidsThe Journal of Chemical Physics, 1958
- Microwave Spectrum and Barrier to Internal Rotation of Acetic AcidThe Journal of Chemical Physics, 1957
- ENERGY LEVELS OF SLIGHTLY ASYMMETRIC TOP MOLECULESCanadian Journal of Physics, 1957
- Internal Barrier of Propylene Oxide from the Microwave Spectrum. IThe Journal of Chemical Physics, 1957
- Hindered rotation in symmetric-asymmetric moleculesTransactions of the Faraday Society, 1956
- Calculation of Energy Levels for Internal Torsion and Over-All Rotation. I. CH3BF2 Type MoleculesThe Journal of Chemical Physics, 1955
- The Molecular Structure of Methyl AlcoholPhysical Review B, 1951
- The Vibration-Rotation Energies of MoleculesReviews of Modern Physics, 1951
- Hindered Rotation in Methyl AlcoholPhysical Review B, 1940
- The Torsion Oscillator-Rotator in the Quantum MechanicsPhysical Review B, 1932