Internal Field and the Additivity of Bond Polarizabilities
- 15 October 1967
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 47 (8), 2985-2989
- https://doi.org/10.1063/1.1712325
Abstract
The effect of internal field on the additivity of bond polarizabilities is investigated using a dipole-interaction model. An application of the theory to the isolated ethane molecule, with the aid of an high-speed computer, has demonstrated a marked dependence of bond polarizability parameters on internal field. It is shown by comparison with experimental data that there is less variation in the average bond polarizability than in the ellipticity of bond polarizability. The results suggest that the bond polarizabilities that best fit present experimental data lie in a region in the b̄CC—b̄CH domain at least as large as b̄CC=0.51±0.03 Å3 by b̄CH=0.66±0.04 Å3 with considerable uncertainty in the ellipticity.Keywords
This publication has 15 references indexed in Scilit:
- Magnetic birefringence of ethaneChemical Communications (London), 1965
- Orientation studies on drawn polyolefinsJournal of Polymer Science, 1962
- Depolarization of Scattered Light by n-Paraffin Vapors and the Additivity of Bond Polarizability TensorsThe Journal of Chemical Physics, 1961
- The photo-elastic properties of cross-linked amorphous polymers. Part 1.—Natural rubber and gutta-perchaTransactions of the Faraday Society, 1956
- Temperature Dependency of the Statistical Segment Size of PolyethyleneThe Journal of Chemical Physics, 1955
- Interaction of Methylene Deformation Frequencies in Paraffin Crystals II. A Theoretical Treatment of the Interaction of VibrationsThe Journal of Chemical Physics, 1955
- The polarizabilities of carbon—carbon bondsTransactions of the Faraday Society, 1954
- The polarisabilities of bonds—ITransactions of the Faraday Society, 1940
- The refractive index dispersion and polarization of gasesProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1936
- VII. Molecular refractivity and atomic interactionJournal of Computers in Education, 1917