Stochastic dynamics simulations of polymethylene melts confined between solid surfaces
- 1 January 1993
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 98 (1) , 729-736
- https://doi.org/10.1063/1.464619
Abstract
Stochastic dynamics simulations of polymethylene chains (C n H2n+2 for n=13, 28, 60) represented by united atom models have been carried out in order to investigate both the equilibrium and dynamic properties of polymer melts confined between flat solid surfaces. The packing manner of monomer segments, segment orientation and local conformations of chains are found to be independent of chain length, and agree very well with the results of the previous Monte Carlo simulations of C13H28 melts. The chains are extremely flattened close to the surface and many molecules assume essentially two‐dimensional train configurations even in the case of C60H122 melts. However, the local chain conformations are only slightly affected by the surfaces. The apparent self diffusivities are found to be independent of the distance from the surface as the result of a reduced mobility normal to the surface and an enhanced mobility parallel to the surface. The absolute magnitudes of self‐diffusion constants are larger than experimental values, most likely due to the application of united atom model.Keywords
This publication has 14 references indexed in Scilit:
- Computer simulations of n-alkane meltsThe Journal of Chemical Physics, 1991
- Molecular arrangements and conformations of liquid n-tridecane chains confined between two hard wallsThe Journal of Chemical Physics, 1990
- Off-lattice Monte Carlo simulations of polymer melts confined between two plates. 2. Effects of chain length and plate separationMacromolecules, 1990
- Off-lattice Monte Carlo simulations of polymer melts confined between two platesThe Journal of Chemical Physics, 1988
- Structure and thermodynamics of bulk homopolymer solid interfaces: a site lattice model approachMacromolecules, 1988
- Molecular dynamics simulation of polymer liquid and glass. I. Glass transitionThe Journal of Chemical Physics, 1987
- Monte Carlo studies of the melt–vacuum interface of a lattice polymerThe Journal of Chemical Physics, 1987
- Algorithms for brownian dynamicsMolecular Physics, 1982
- Numerical integration of the cartesian equations of motion of a system with constraints: molecular dynamics of n-alkanesJournal of Computational Physics, 1977
- Average Length and Radius of Normal Paraffln Hydrocarbon MoleculesThe Journal of Chemical Physics, 1948