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Oyarzun, B. (author), Van Westen, T. (author), Vlugt, T.J.H. (author)
The isotropic-nematic phase equilibria of linear hard-sphere chains and binary mixtures of them are obtained from Monte Carlo simulations. In addition, the infinite dilution solubility of hard spheres in the coexisting isotropic and nematic phases is determined. Phase equilibria calculations are performed in an expanded formulation of the Gibbs...
journal article 2015
document
Van Westen, T. (author), Oyarzun, B. (author), Vlugt, T.J.H. (author), Gross, J. (author)
An extension of Onsager's second virial theory is developed to describe the isotropic-nematic phase transition of tangent hard-sphere chain fluids. Flexibility is introduced by the rod-coil model. The effect of chain-flexibility on the second virial coefficient is described using an accurate, analytical approximation for the orientation...
journal article 2013
document
Oyarzun, B.A. (author), Van Westen, T. (author), Vlugt, T.J.H. (author)
he liquid crystal phase behavior of linear and partially flexible hard-sphere chain fluids and the solubility of hard spheres in hard-sphere chain fluids are studied by constant pressure Monte Carlo simulations. An extensive study on the phase behavior of linear fluids with a length of 7, 8, 9, 10, 11, 12, 13, 14, 15, and 20 beads is carried out...
journal article 2013
document
Van Westen, T. (author), Vlugt, T.J.H. (author), Gross, J. (author)
Onsager-like theories are commonly used to describe the phase behavior of nematic (only orientationally ordered) liquid crystals. A key ingredient in such theories is the orientation-dependent excluded volume of two molecules. Although for hard convex molecular models this is generally known in analytical form, for more realistic molecular...
journal article 2012
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