Effective electrodiffusion equation for non-uniform nanochannels

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Abstract

We derive a one-dimensional formulation of the Planck-Nernst-Poisson equation to describe the dynamics of a symmetric binary electrolyte in channels whose section is nanometric and varies along the axial direction. The approach is in the spirit of the Fick-Jacobs diffusion equation and leads to a system of coupled equations for the partial densities which depends on the charge sitting at the walls in a non-trivial fashion. We consider two kinds of non-uniformities, those due to the spatial variation of charge distribution and those due to the shape variation of the pore and report one- and three-dimensional solutions of the electrokinetic equations. © 2013 AIP Publishing LLC.

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Marconi, U. M. B., Melchionna, S., & Pagonabarraga, I. (2013). Effective electrodiffusion equation for non-uniform nanochannels. Journal of Chemical Physics, 138(24). https://doi.org/10.1063/1.4811516

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