A Case Study of Sedimentation of Charged Colloids: The Primitive Model and the Effective One-Component Approach
arXiv:cond-mat/0702382 · doi:10.1103/PhysRevE.75.041405
Abstract
Sedimentation-diffusion equilibrium density profiles of suspensions of charge-stabilized colloids are calculated theoretically and by Monte Carlo simulation, both for a one-component model of colloidal particles interacting through pairwise screened-Coulomb repulsions and for a three-component model of colloids, cations, and anions with unscreened-Coulomb interactions. We focus on a state point for which experimental measurements are available [C.P. Royall et al., J. Phys.: Cond. Matt. {\bf 17}, 2315 (2005)]. Despite the apparently different picture that emerges from the one- and three-component model (repelling colloids pushing each other to high altitude in the former, versus a self-generated electric field that pushes the colloids up in the latter), we find similar colloidal density profiles for both models from theory as well as simulation, thereby suggesting that these pictures represent different view points of the same phenomenon. The sedimentation profiles obtained from an effective one-component model by MC simulations and theory, together with MC simulations of the multi-component primitive model are consistent among themselves, but differ quantitatively from the results of a theoretical multi-component description at the Poisson-Boltzmann level. We find that for small and moderate colloid charge the Poisson-Boltzmann theory gives profiles in excellent agreement with the effective one-component theory if a smaller effective charge is used. We attribute this discrepancy to the poor treatment of correlations in the Poisson-Boltzmann theory.
9 pages, 7 figures
References in corpus (6)
- Effective macroion charge and stability of highly asymmetric electrolytes at various salt conditions
- Extended sedimentation profiles in charged colloids: the gravitational length, entropy, and electrostatics
- Volume terms for charged colloids: a grand-canonical treatment
- Nonlinear screening and gas-liquid separation in suspensions of charged colloids
- The sediment of mixtures of charged colloids: segregation and inhomogeneous electric fields
- Sedimentation of binary mixtures of like- and oppositely charged colloids: the primitive model or effective pair potentials?
Cited by in corpus (5)
- Better than counting: Density profiles from force sampling
- The polydisperse cell model: Non-linear screening and charge renormalization in colloidal mixtures
- Colloidal Brazil nut effect in microswimmer mixtures induced by motility contrast
- Structural correlations and phase separation in binary mixtures of charged and uncharged colloids
- Realisation of the Brazil-nut effect in charged colloids without external driving