Physical Review Letters · 2020 · 26 citations · 47 references
ElectrohydrodynamicsEngineeringDielectric Medium AttractCharged SurfacesStrong Long-range RepulsionIon ProcessOsmotic PressureStrong RepulsionCapillarity PhenomenonTransport PhenomenaIon BeamIon EmissionInterfacial ProcessPhysicsAtomic PhysicsPhysical ChemistryAc Electric FieldElectrochemistryInterfacial PhenomenonSurface ScienceApplied PhysicsElectric FieldsIon StructureElectrical Mobility
Two oppositely charged surfaces separated by a dielectric medium attract each other. In contrast we observe a strong repulsion between two plates of a capacitor that is filled with an aqueous electrolyte upon application of an alternating potential difference between the plates. This long-range force increases with the ratio of diffusion coefficients of the ions in the medium and reaches a steady state after a few minutes, which is much larger than the millisecond timescale of diffusion across the narrow gap. The repulsive force, an order of magnitude stronger than the electrostatic attraction observed in the same setup in air, results from the increase in osmotic pressure as a consequence of the field-induced excess of cations and anions due to lateral transport from adjacent reservoirs.
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Munna Lal, Howard A. Barnes · Journal of Non-Newtonian Fluid Mechanics · 1990 · 1.2K citations
On porous electrodes in electrolyte solutions
Robert de Levie · Electrochimica Acta · 1963 · 925 citations