Controlling the interfacial and bulk concentrations of spontaneously charged colloids in non-polar media
arXiv:1808.05873 · doi:10.1140/epjst/e2019-800125-9
Abstract
Stabilization and dispersion of electrical charge by colloids in non-polar media, such as nano-particles or inverse micelles, is significant for a variety of chemical and technological applications, ranging from drug delivery to e-ink. Many applications require knowledge about concentrations near the solid|liquid interface and the bulk, particularly in media where colloids exhibit spontaneous charging properties. By modification of the mean field equations to include the finite size effects that are typical in concentrated electrolytes along with disproportionation kinetics, and by considering high potentials, it is possible to evaluate the width of the condensed double layers near planar electrodes and the bulk concentrations of colloids at steady state. These quantities also provide an estimate of the minimum initial colloid concentration that is required to support electroneutrality in the dispersion bulk, and thus provide insights into the quasi-steady state currents that have been observed in inverse micellar media.
13 pages, 5 figures
References in corpus (5)
- Are Room Temperature Ionic Liquids Dilute Electrolytes?
- From solvent free to dilute electrolytes: Essential components for a continuum theory
- Bjerrum Pairs in Ionic Solutions: a Poisson-Boltzmann Approach
- Mean field approach to first and second order phase transitions in ionic liquids
- Adsorption isotherms of charged nanoparticles