Structure and phase behavior of colloidal dumbbells with tunable attractive interactions
arXiv:1310.4327 · doi:10.1039/C3CP52425F
Abstract
We investigate thermodynamic and structural properties of colloidal dumbbells in the framework provided by the Reference Interaction Site Model (RISM) theory of molecular fluids and Monte Carlo simulations. We consider two different models: in the first one we set identical square-well attractions on the two tangent spheres composing the molecule (SW-SW model); in the second scheme, one of square-well interactions is switched off (HS-SW model). Appreciable differences emerge between the physical properties of the two models. Specifically, the behavior of SW-SW structure factors points to the presence of a gas-liquid coexistence, as confirmed by subsequent fluid phase equilibria calculations. Conversely, the HS-SW develops a low- peak, signaling the presence of aggregates; such a process destabilizes the gas-liquid phase separation, promoting at low temperatures the formation of a cluster phase, whose structure depends on the system density. We further investigate such differences by studying the phase behavior of a series of intermediate models, obtained from the original SW-SW by progressively reducing the depth of one square-well interaction. RISM structural predictions positively reproduce the simulation data, including the rise of ) in the SW-SW model and the low- peak in the HS-SW structure factor. As for the phase behavior, RISM agrees with Monte Carlo simulations in predicting a gas-liquid coexistence for the SW-SW model (though the critical parameters appears overestimated by the theory) and its progressive disappearance moving toward the HS-SW model.
12 pages, 13 figures, 1 table, 78 references
References in corpus (6)
- Phase diagram of patchy colloids: towards empty liquids
- Observation of empty liquids and equilibrium gels in a colloidal clay
- Phase diagram of Janus Particles
- A numerical study of one-patch colloidal particles: from square-well to Janus
- Crystal nucleation of colloidal hard dumbbells
- Thermodynamically consistent Reference Interaction Site Model theory of the tangent diatomic fluid
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- Confinement effects on the properties of Janus dimers
- Phase Separation and Self-Assembly in a Fluid of Mickey Mouse Particles
- Phase behaviour and dynamics of three-dimensional active dumbbell systems
- Early stages of aggregation in fluid mixtures of dimers and spheres: a theoretical and simulation study
- Integral equation study of soft-repulsive dimeric fluids