Nucleation in binary polymer blends: Effects of foreign mesoscopic spherical particles
- 24 June 2004
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 121 (2) , 1105-1113
- https://doi.org/10.1063/1.1761053
Abstract
We study nucleation in binary polymer blends in the presence of mesoscopic spherical particles using self-consistent field theory, considering both heterogeneous and homogeneous nucleation mechanisms. Heterogeneous nucleation is found to be highly sensitive to surface selectivity and particle size, with rather subtle dependence on the particle size. Particles that preferentially adsorb the nucleating species generally favor heterogeneous nucleation. For sufficiently strong adsorption, barrierless nucleation is possible. By comparing the free energy barrier for homogeneous and heterogeneous nucleation, we construct a kinetic phase diagram.Keywords
This publication has 18 references indexed in Scilit:
- Interplay between wetting and miscibility in thin binary polymer filmsComputer Physics Communications, 2002
- Heterogeneous nucleation on mesoscopic wettable particles: A hybrid thermodynamic/density-functional theoryThe Journal of Chemical Physics, 2002
- Heterogeneous nucleation on aerosol particlesThe Journal of Chemical Physics, 2001
- Symmetric polymer blend confined into a film with antisymmetric surfaces: Interplay between wetting behavior and the phase diagramPhysical Review E, 2000
- Nucleation on a solid substrate: A density functional approachThe Journal of Chemical Physics, 1996
- Ion-induced nucleation. II. Polarizable multipolar moleculesThe Journal of Chemical Physics, 1995
- Heterogeneous nucleation of molecular and dipolar fluidsPhysica A: Statistical Mechanics and its Applications, 1995
- Nucleation in molecular and dipolar fluids: Interaction site modelThe Journal of Chemical Physics, 1995
- Ion-induced nucleation: A density functional approachThe Journal of Chemical Physics, 1995
- Light-scattering experiments on phase-separation dynamics in binary fluid mixturesPhysical Review A, 1992