Theory of hydrodynamic forces in electric double layers

Fuente: arXiv
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Main Authors: Cramail, C., Lhermerout, R., Charlaix, E.
Format: Preprint
Published: 2025
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author Cramail, C.
Lhermerout, R.
Charlaix, E.
author_facet Cramail, C.
Lhermerout, R.
Charlaix, E.
contents We present a theory of the hydrodynamic forces in the drainage flow of an electrolyte between a sphere and a plane with charged surfaces. Our theory considers a thin electrolyte film which is at all times in local equilibrium across its thickness. In addition to the usual lubrication force, we explicit the electro-kinetic force due to the transport of the diffuse electrical charges as well as the diffusio-kinetic force due to the transport of the excess ion concentration in the Electrostatic Double Layers (EDLs). Our general formalism covers both the case of non-overlapping EDLs and of overlapping EDLs. We study more specifically the mechanical impedance induced by an oscillatory motion of small amplitude of the surfaces. Among our main results, we show that the increase in damping due to the electro-kinetic effect is not monotonic with the surface charge, and we predict a diffusio-kinetic stiffness with a long-range decay in power minus four of the sphere-plane gap susceptible to overcoming the stiffness of the equilibrium Derjaguin-Landau-Verwey-Overbeek force. The comparison of our results with experiments could allow one to confront the theories of electrolyte transport in the Electrostatic Double Layers without adjustable parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2503_23853
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Theory of hydrodynamic forces in electric double layers
Cramail, C.
Lhermerout, R.
Charlaix, E.
Soft Condensed Matter
Fluid Dynamics
We present a theory of the hydrodynamic forces in the drainage flow of an electrolyte between a sphere and a plane with charged surfaces. Our theory considers a thin electrolyte film which is at all times in local equilibrium across its thickness. In addition to the usual lubrication force, we explicit the electro-kinetic force due to the transport of the diffuse electrical charges as well as the diffusio-kinetic force due to the transport of the excess ion concentration in the Electrostatic Double Layers (EDLs). Our general formalism covers both the case of non-overlapping EDLs and of overlapping EDLs. We study more specifically the mechanical impedance induced by an oscillatory motion of small amplitude of the surfaces. Among our main results, we show that the increase in damping due to the electro-kinetic effect is not monotonic with the surface charge, and we predict a diffusio-kinetic stiffness with a long-range decay in power minus four of the sphere-plane gap susceptible to overcoming the stiffness of the equilibrium Derjaguin-Landau-Verwey-Overbeek force. The comparison of our results with experiments could allow one to confront the theories of electrolyte transport in the Electrostatic Double Layers without adjustable parameters.
title Theory of hydrodynamic forces in electric double layers
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2503.23853