Stabilizing the hexagonal close packed structure of hard spheres with polymers: Phase diagram, structure, and dynamics

Publication date

2016-08-07

Authors

Edison, J.R.ISNI 0000000436401412
Dasgupta, TonnishthaISNI 0000000518036658
Dijkstra, MarjoleinISNI 0000000358257928

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Advisors

Supervisors

Document Type

Article
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taverne

Abstract

We study the phase behaviour of a binary mixture of colloidal hard spheres and freely jointed chains of beads using Monte Carlo simulations. Recently Panagiotopoulos and co-workers predicted [Nat. Commun. 5, 4472 (2014)] that the hexagonal close packed (HCP) structure of hard spheres can be stabilized in such a mixture due to the interplay between polymer and the void structure in the crystal phase. Their predictions were based on estimates of the free-energy penalty for adding a single hard polymer chain in the HCP and the competing face centered cubic (FCC) phase. Here we calculate the phase diagram using free-energy calculations of the full binary mixture and find a broad fluid-solid coexistence region and a metastable gas-liquid coexistence region. For the colloid-monomer size ratio considered in this work, we find that the HCP phase is only stable in a small window at relatively high polymer reservoir packing fractions, where the coexisting HCP phase is nearly close packed. Additionally we investigate the structure and dynamic behaviour of these mixtures.

Keywords

General Physics and Astronomy, Physical and Theoretical Chemistry

Citation

Edison, J R, Dasgupta, T & Dijkstra, M 2016, 'Stabilizing the hexagonal close packed structure of hard spheres with polymers : Phase diagram, structure, and dynamics', Journal of Chemical Physics, vol. 145, no. 5, 054902. https://doi.org/10.1063/1.4959972