Asymmetric Coulomb fluids at randomly charged dielectric interfaces: Anti-fragility, overcharging and charge inversion
arXiv:1409.2609 · doi:10.1063/1.4898663
Abstract
We study the distribution of multivalent counterions next to a dielectric slab, bearing a quenched, random distribution of charges on one of its solution interfaces, with a given mean and variance, both in the absence and in the presence of a bathing monovalent salt solution. We use the previously derived approach based on the dressed multivalent-ion theory that combines aspects of the strong and weak coupling of multivalent and monovalent ions in a single framework. The presence of quenched charge disorder on the charged surface of the dielectric slab is shown to substantially increase the density of multivalent counterions in its vicinity. In the counterion-only model (with no monovalent salt ions), the surface disorder generates an additional logarithmic attraction potential and thus an algebraically singular counterion density profile at the surface. This behavior persists also in the presence of a monovalent salt bath and results in significant violation of the contact-value theorem, reflecting the anti-fragility effects of the disorder that drive the system towards a more ordered state. In the presence of an interfacial dielectric discontinuity, depleting the counterion layer at the surface, the charge disorder still generates a much enhanced counterion density further away from the surface. Likewise, the charge inversion and/or overcharging of the surface occur more strongly and at smaller bulk concentrations of multivalent counterions when the surface carries quenched charge disorder. Overall, the presence of quenched surface charge disorder leads to sizable effects in the distribution of multivalent counterions in a wide range of realistic parameters and typically within a distance of a few nanometers from the charged surface.
16 pages, 8 figures
References in corpus (15)
- Statics and Dynamics of Strongly Charged Soft Matter
- Anomalies in electrostatic calibrations for the measurement of the Casimir force in a sphere-plane geometry
- Casimir Force and In Situ Surface Potential Measurements on Nanomembranes
- No anomalous scaling in electrostatic calibrations for Casimir force measurements
- Comment on "Anomalies in electrostatic calibration for the measurement of the Casimir force in a sphere-plane geometry"
- Distribution of counterions near discretely charged planes and rods
- Statistically enhanced self-attraction of random patterns
- Weak and Strong-Coupling Electrostatic Interactions between Asymmetrically Charged Planar Surfaces
- Simulation of charge reversal in salty environments: Giant overcharging?
- One-dimensional counterion gas between charged surfaces: Exact results compared with weak- and strong-coupling analysis
- Reply to "Comment on 'Anomalies in electrostatic calibrations for the measurement of the Casimir force in a sphere-plane geometry'"
- Partially Annealed Disorder and Collapse of Like-Charged Macroions
- Electrostatic interactions mediated by polarizable counterions: weak and strong coupling limits
- Orientation-dependent surface composition of in situ annealed strontium titanate
- Electrostatic attraction between cationic-anionic assemblies with surface compositional heterogeneities
Cited by in corpus (5)
- Theoretical investigation of a polarizable colloid in the salt medium
- Model charged cylindrical nanopore in a colloidal dispersion: charge reversal, overcharging and double overcharging
- On the improvement of SPT2 approach in the theory of a hard sphere fluid in disordered porous media
- Structure of electrolyte solutions at non-uniformly charged surfaces on a variety of length scales
- An analysis of the fluctuation potential in the modified Poisson-Boltzmann theory for restricted primitive model electrolytes