## Abstract A heterogeneous lattice model for main‐chain liquid‐crystalline polymers is proposed. Phase transition parameters and statistical properties of the chain in the ordered phase are treated in the framework of a mean‐field approximation. The order parameters for the mesogen and the spacer
Lattice model of heterogeneous polymer chains in the liquid-crystalline state, 2 local relaxation properties
✍ Scribed by Yuli Y. Gotlib; Gregory A. Medvedev
- Publisher
- John Wiley and Sons
- Year
- 1994
- Tongue
- English
- Weight
- 584 KB
- Volume
- 3
- Category
- Article
- ISSN
- 1022-1344
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✦ Synopsis
Abstract
Using a lattice description, the short‐ and medium‐scale dynamics of the heterogeneous model of main‐chain liquid‐crystalline polymers have been considered. Chain mobility is assumed to occur by means of three‐ and four‐bond kinetic‐unit jumps. Mobility and force coefficient tensors, and linear relaxation equations for the average projections of chain bonds have been obtained. Both acoustic and optical branches of the relaxation spectrum are shown to be split into longitudinal and transverse components. A pronounced dependence of relaxation spectrum shape and splitting magnitude on the spacer length has been found.
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