Thermodynamic Properties of the Internal Rotator. Double Minimum with Repulsive Forces
- 1 April 1948
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 16 (4) , 410-419
- https://doi.org/10.1063/1.1746905
Abstract
The basis for calculating the thermodynamic properties of the unsymmetrical internal rotator from energy levels derived from the old quantum theory is described, and a method is outlined for calculations with a potential energy function consisting of linked sections of cosine curve with the width of each section proportional to the barrier height. A table of values of a general quantum number index for the cosine function is presented and its application to the unsymmetrical internal rotator is illustrated. Thermodynamic properties are calculated for a double minimum system of optical isomers for which the forces restricting rotation must be repulsive. It is found that the entropy of such a system may be greater by nearly 0.5 unit than that of the limiting system with equal potential maxima, that is, with the symmetrical cosine potential function.Keywords
This publication has 3 references indexed in Scilit:
- Restricted Rotator Thermodynamic Properties from the Old Quantum TheoryThe Journal of Chemical Physics, 1947
- An Empirical Correlation and Method of Calculation of Barriers Hindering Internal RotationThe Journal of Chemical Physics, 1944
- Energy Levels and Thermodynamic Functions for Molecules with Internal Rotation I. Rigid Frame with Attached TopsThe Journal of Chemical Physics, 1942