English

Self-diffusion coefficients of charged particles: Prediction of Nonlinear volume fraction dependence

Soft Condensed Matter 2009-10-30 v1

Abstract

We report on calculations of the translational and rotational short-time self-diffusion coefficients DstD^t_s and DsrD^r_s for suspensions of charge-stabilized colloidal spheres. These diffusion coefficients are affected by electrostatic forces and many-body hydrodynamic interactions (HI). Our computations account for both two-body and three-body HI. For strongly charged particles, we predict interesting nonlinear scaling relations Dst1atϕ4/3D^t_s\propto 1-a_t\phi^{4/3} and Dsr1arϕ2D^r_s\propto 1-a_r\phi^2 depending on volume fraction ϕ\phi, with essentially charge-independent parameters ata_t and ara_r. These scaling relations are strikingly different from the corresponding results for hard spheres. Our numerical results can be explained using a model of effective hard spheres. Moreover, we perceptibly improve the known result for DstD^t_s of hard sphere suspensions.

Keywords

Cite

@article{arxiv.cond-mat/9707282,
  title  = {Self-diffusion coefficients of charged particles: Prediction of Nonlinear volume fraction dependence},
  author = {M. Watzlawek and G. Naegele},
  journal= {arXiv preprint arXiv:cond-mat/9707282},
  year   = {2009}
}

Comments

8 pages, LaTeX, 3 Postscript figures included using epsf