Local Reorientation Dynamics of Semiflexible Polymers in the Melt
arXiv:cond-mat/0005432 · doi:10.1021/ma000058y
Abstract
The reorientation dynamics of local tangent vectors of chains in isotropic amorphous melts containing semiflexible model polymers was studied by molecular dynamics simulations. The reorientation is strongly influenced both by the local chain stiffness and by the overall chain length. It takes place by two different subsequent processes: A short-time non-exponential decay and a long-time exponential reorientation arising from the relaxation of medium-size chain segments. Both processes depend on stiffness and chain length. The strong influence of the chain length on the chain dynamics is in marked contrast to its negligible effect on the static structure of the melt. The local structure shows only a small dependence on the stiffness, and is independent of chain length. Calculated correlation functions related to double-quantum NMR experiments are in qualitative agreement with experiments on entangled melts. A plateau is observed in the dependence of segment reorientation on the mean-squared displacement of the corresponding chain segments. This plateau confirms, on one hand, the existence of reptation dynamics. On the other hand, it shows how the reptation picture has to be adapted if, instead of fully flexible chains, semirigid chains are considered.
29 pages, several figures, accepted by Macromolecules
References in corpus (1)
Cited by in corpus (14)
- Kremer-Grest models for commodity polymer melts: Linking theory, experiment and simulation at the Kuhn scale
- Growth, microstructure, and failure of crazes in glassy polymers
- Cracks and Crazes: On calculating the macroscopic fracture energy of glassy polymers from molecular simulations
- Yield conditions for deformation of amorphous polymer glasses
- Automatic Coarse Graining of Polymers
- Numerical modelling of non-ionic microgels: an overview
- Properties of Poly (isoprene) - Model Building in the Melt and in Solution
- Characteristic time and length scales in melts of Kremer-Grest bead-spring polymers with wormlike bending stiffness
- Jamming under tension in polymer crazes
- Local Structure and Dynamics of Trans-polyisoprene oligomers
- Multiscale approach to equilibrating model polymer melts
- Efficient equilibration of confined and free-standing films of highly entangled polymer melts
- Multiscale equilibration of highly entangled isotropic model polymer melts
- Entropic stress of grafted polymer chains in shear flow