English

Criticality in Charge-asymmetric Hard-sphere Ionic Fluids

Statistical Mechanics 2009-11-10 v2

Abstract

Phase separation and criticality are analyzed in zz:1 charge-asymmetric ionic fluids of equisized hard spheres by generalizing the Debye-H\"{u}ckel approach combined with ionic association, cluster solvation by charged ions, and hard-core interactions, following lines developed by Fisher and Levin (1993, 1996) for the 1:1 case (i.e., the restricted primitive model). Explicit analytical calculations for 2:1 and 3:1 systems account for ionic association into dimers, trimers, and tetramers and subsequent multipolar cluster solvation. The reduced critical temperatures, TcT_c^* (normalized by zz), \textit{decrease} with charge asymmetry, while the critical densities \textit{increase} rapidly with zz. The results compare favorably with simulations and represent a distinct improvement over all current theories such as the MSA, SPB, etc. For zz\ne1, the interphase Galvani (or absolute electrostatic) potential difference, Δϕ(T)\Delta \phi(T), between coexisting liquid and vapor phases is calculated and found to vanish as TTcβ|T-T_c|^\beta when TTcT\to T_c- with, since our approximations are classical, β=1/2\beta={1/2}. Above TcT_c, the compressibility maxima and so-called kk-inflection loci (which aid the fast and accurate determination of the critical parameters) are found to exhibit a strong zz-dependence.

Keywords

Cite

@article{arxiv.cond-mat/0410692,
  title  = {Criticality in Charge-asymmetric Hard-sphere Ionic Fluids},
  author = {Jean-Noel Aqua and Shubho Banerjee and Michael E. Fisher},
  journal= {arXiv preprint arXiv:cond-mat/0410692},
  year   = {2009}
}

Comments

25 pages, 14 figures; last update with typos corrected and some added references

R2 v1 2026-07-22T11:09:36.977Z