Angular correlations in linear copolymers from the compositional dependence of their dipole moments. I. Random copolymerization
- 15 April 1974
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 60 (8) , 3078-3081
- https://doi.org/10.1063/1.1681493
Abstract
A theory is developed, without recourse to a detailed model, for evaluating certain linear combinations of the average cosines of the angles between dipole moments of pairs of structural units that are closely spaced along the chain contour. Measurements of the compositional dependence of the effective dipole moment per structural unit together with a knowledge of the compositional dependence of the probabilities for various types of sequences of structural units provide the required information. The theory offers a possibility for testing the validity of certain restrictive assumptions that are implicit in earlier treatments of the problem. Additionally, the theory provides a basis for determining unequivocally from experimental measurements whether angular correlations exist among the structural units that contribute to the orientational part of the polarization and whether the angular correlation parameters, if they exist, depend on the types of structural units involved.Keywords
This publication has 6 references indexed in Scilit:
- Estimation of carboxy‐terminated polybutadiene functionality distribution via fractionation on silica gelJournal of Polymer Science: Polymer Chemistry Edition, 1973
- Dipole Moment and Molecular Structure of Copolymers. III. Dipole Moment of p-Methoxystyrene-Styrene Copolymers and p-Chlorostyrene-Styrene CopolymersBulletin of the Chemical Society of Japan, 1966
- Copolymerization Mathematics and the Description of Stereoregular PolymersThe Journal of Chemical Physics, 1962
- Dipole moments and molecular structure of copolymers. I. Dipole moment of methyl methacrylate–styrene copolymersJournal of Polymer Science, 1962
- Detailed Structure of Copolymers from Dielectric MeasurementsJournal of Applied Physics, 1956
- The Dielectric Polarization of Polar LiquidsThe Journal of Chemical Physics, 1939