English

Virial expansion for charged colloids and electrolytes

Soft Condensed Matter 2009-11-07 v1 Statistical Mechanics

Abstract

Using a field-theoretic approach, we derive the first few coefficients of the exact low-density (``virial'') expansion of a binary mixture of positively and negatively charged hard spheres (two-component hard-core plasma, TCPHC). Our calculations are nonperturbative with respect to the diameters d+d_+ and dd_- and charge valences q+q_+ and qq_- of positive and negative ions. Consequently, our closed-form expressions for the coefficients of the free energy and activity can be used to treat dilute salt solutions, where typically d+dd_+ \sim d_- and q+qq_+ \sim q_-, as well as colloidal suspensions, where the difference in size and valence between macroions and counterions can be very large. We show how to map the TCPHC on a one-component hard-core plasma (OCPHC) in the colloidal limit of large size and valence ratio, in which case the counterions effectively form a neutralizing background. A sizable discrepancy with the standard OCPHC with uniform, rigid background is detected, which can be traced back to the fact that the counterions cannot penetrate the colloids. For the case of electrolyte solutions, we show how to obtain the cationic and anionic radii as independent parameters from experimental data for the activity coefficient.

Keywords

Cite

@article{arxiv.cond-mat/0210282,
  title  = {Virial expansion for charged colloids and electrolytes},
  author = {Andre G Moreira and Roland R Netz},
  journal= {arXiv preprint arXiv:cond-mat/0210282},
  year   = {2009}
}

Comments

15 pages

R2 v1 2026-07-22T10:42:17.432Z