Stabilizing the hexagonal close packed structure of hard spheres with polymers: Phase diagram, structure, and dynamics
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2016-08-07
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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.
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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