Electrokinetic and hydrodynamic properties of charged-particles systemsFrom small electrolyte ions to large colloids

被引:0
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作者
G. Nägele
M. Heinen
A. J. Banchio
C. Contreras-Aburto
机构
[1] Research Centre Jülich,Institute of Complex Systems (ICS
[2] Heinrich-Heine-Universität Düsseldorf,3)
[3] Universidad Nacional de Córdoba,Institut für Theoretische Physik II: Weiche Materie
[4] and IFEG-CONICET,FaMAF
[5] Universidad de Guanajuato Campus León,División de Ciencias e Ingenierías
关键词
European Physical Journal Special Topic; Hard Sphere; Colloidal Dispersion; Slip Length; Lattice Boltzmann;
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摘要
Dynamic processes in dispersions of charged spherical particles are of importance both in fundamental science, and in technical and bio-medical applications. There exists a large variety of charged-particles systems, ranging from nanometer-sized electrolyte ions to micron-sized charge-stabilized colloids. We review recent advances in theoretical methods for the calculation of linear transport coefficients in concentrated particulate systems, with the focus on hydrodynamic interactions and electrokinetic effects. Considered transport properties are the dispersion viscosity, self- and collective diffusion coefficients, sedimentation coefficients, and electrophoretic mobilities and conductivities of ionic particle species in an external electric field. Advances by our group are also discussed, including a novel mode-coupling-theory method for conduction-diffusion and viscoelastic properties of strong electrolyte solutions. Furthermore, results are presented for dispersions of solvent-permeable particles, and particles with non-zero hydrodynamic surface slip. The concentration-dependent swelling of ionic microgels is discussed, as well as a far-reaching dynamic scaling behavior relating colloidal long- to short-time dynamics.
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页码:2855 / 2872
页数:17
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