Relaxation dynamics in fluids of platelike colloidal particles
arXiv:0705.0104 · doi:10.1103/PhysRevE.76.021405
Abstract
The relaxation dynamics of a model fluid of platelike colloidal particles is investigated by means of a phenomenological dynamic density functional theory. The model fluid approximates the particles within the Zwanzig model of restricted orientations. The driving force for time-dependence is expressed completely by gradients of the local chemical potential which in turn is derived from a density functional -- hydrodynamic interactions are not taken into account. These approximations are expected to lead to qualitatively reliable results for low densities as those within the isotropic-nematic two-phase region. The formalism is applied to model an initially spatially homogeneous stable or metastable isotropic fluid which is perturbed by switching a two-dimensional array of Gaussian laser beams. Switching on the laser beams leads to an accumulation of colloidal particles in the beam centers. If the initial chemical potential and the laser power are large enough a preferred orientation of particles occurs breaking the symmetry of the laser potential. After switching off the laser beams again the system can follow different relaxation paths: It either relaxes back to the homogeneous isotropic state or it forms an approximately elliptical high-density core which is elongated perpendicular to the dominating orientation in order to minimize the surface free energy. For large supersaturations of the initial isotropic fluid the high-density cores of neighboring laser beams of the two-dimensional array merge into complex superstructures.
low-resolution figures due to file size restrictions, revised version
References in corpus (10)
- Dynamical density functional theory and its application to spinodal decomposition
- Effective Interaction of Charged Platelets in Aqueous Solution: Investigations of Colloid Laponite Suspensions by Static Light Scattering and Small-Angle X-Ray Scattering
- Phase diagrams of Zwanzig models: The effect of polydispersity
- Bulk and interfacial properties of binary hard-platelet fluids
- Structure and equation of state of interaction site models for disc-shaped lamellar colloids
- Thermodynamics and phase behavior of the lamellar Zwanzig model
- Depletion potential in colloidal mixtures of hard spheres and platelets
- Bulk and wetting phenomena in a colloidal mixture of hard spheres and platelets
- Free Isotropic-Nematic Interfaces in Fluids of Charged Platelike Colloids
- Surface properties of fluids of charged platelike colloids
Cited by in corpus (7)
- Classical dynamical density functional theory: from fundamentals to applications
- Dynamical density functional theory with hydrodynamic interactions and colloids in unstable traps
- Power functional theory for many-body dynamics
- Structure and thermodynamics of platelet dispersions
- Extended dynamical density functional theory for colloidal mixtures with temperature gradients
- A Landau-de Gennes theory for hard colloidal rods: defects and tactoids
- Nonequilibrium steady states in fluids of platelike colloidal particles