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Phase Separation of Colloid Polymer Mixtures Under Confinement

In: High Performance Computing in Science and Engineering ‘13

Author

Listed:
  • Antonia Statt

    (Johannes Gutenberg-Universität, Institut für Physik)

  • Alexander Winkler

    (Johannes Gutenberg-Universität, Institut für Physik)

  • Peter Virnau

    (Johannes Gutenberg-Universität, Institut für Physik)

  • Kurt Binder

    (Johannes Gutenberg-Universität, Institut für Physik)

Abstract

Colloid polymer mixtures exhibit vapor-liquid like and liquid-solid like phase transitions in bulk suspensions, and are well-suited model systems to explore confinement effects on these phase transitions. Static aspects of these phenomena are studied by large-scale Monte Carlo simulations, including novel “ensemble switch” methods to estimate excess free energies due to confining walls. The kinetics of phase separation is investigated by a Molecular Dynamics method, where hydrodynamic effects due to the solvent are included via the multiparticle collision dynamics method.

Suggested Citation

  • Antonia Statt & Alexander Winkler & Peter Virnau & Kurt Binder, 2013. "Phase Separation of Colloid Polymer Mixtures Under Confinement," Springer Books, in: Wolfgang E. Nagel & Dietmar H. Kröner & Michael M. Resch (ed.), High Performance Computing in Science and Engineering ‘13, edition 127, pages 19-31, Springer.
  • Handle: RePEc:spr:sprchp:978-3-319-02165-2_2
    DOI: 10.1007/978-3-319-02165-2_2
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