Defying the gibbs phase rule: Evidence for an entropy-driven quintuple point in colloid-polymer mixtures

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Abstract

Using a minimal algebraic model for the thermodynamics of binary rod-polymer mixtures, we provide evidence for a quintuple phase equilibrium; an observation that seems to be at odds with the Gibbs phase rule for two-component systems. Our model is based on equations of state for the relevant liquid crystal phases that are in quantitative agreement with computer simulations. We argue that the appearance of a quintuple equilibrium, involving an isotropic fluid, a nematic and smectic liquid crystal, and two solid phases, can be reconciled with a generalized Gibbs phase rule in which the two intrinsic length scales of the athermal colloid-polymer mixture act as additional field variables.

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Peters, V. F. D., Vis, M., García, G., Wensink, H. H., & Tuinier, R. (2020). Defying the gibbs phase rule: Evidence for an entropy-driven quintuple point in colloid-polymer mixtures. Physical Review Letters, 125(12). https://doi.org/10.1103/PhysRevLett.125.127803

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