Adsorption of multivalent ions on a charged surface: Oscillating inversion of charge
arXiv:cond-mat/0103208 · doi:10.1103/PhysRevE.64.041407
Abstract
Adsorption of multivalent counterions on the charged surface of a macroion is known to lead to inversion of the macroion charge due to the strong lateral correlations of counterions. We consider a nontrivial role of the excluded volume of counterions on this effect. It is shown analytically that when the bare charge of macroion increases, its net charge including the adsorbed counterions oscillates with the number of their layers. Charge inversion vanishes every time the top layer of counterions is completely full and becomes incompressible. These oscillations of charge inversion are confirmed by Monte-Carlo simulations. Another version of this phenomenon is studied for a metallic electrode screened by multivalent counterions when potential of the electrode is controlled instead of its charge. In this case, oscillations of the compressibility and charge inversion lead to oscillations of capacitance of this electrode with the number of adsorbed layers of multivalent counterions.
9 pages, 8 figures. Many corrections. Submitted to PRE
Cited by in corpus (7)
- Overcharging: The Crucial Role of Excluded Volume
- Strong Coupling Electrostatics in the Presence of Dielectric Inhomogeneities
- Electrostatic image effects for counter-ions between charged planar walls
- Role of Multipoles in Counterion-Mediated Interactions between Charged Surfaces: Strong and Weak Coupling
- Dressed Counterions: Poly- and monovalent ions at charged dielectric interfaces
- Non-mean-field theory of anomalously large double-layer capacitance
- Inversion of DNA charge by a positive polymer via fractionalization of the polymer charge