Asymmetric rectified electric fields: nonlinearities and equivalent circuits

Publication date

2024-01-21

Authors

Barnaveli, AlexanderISNI 0000000492829739
Roij, René vanISNI 0000000392993654

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Advisors

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Document Type

Article
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cc_by

Abstract

Recent experiments [S. H. Hashemi et al., Phys. Rev. Lett., 2018, 121, 185504] have shown that a long-ranged steady electric field emerges when applying an oscillating voltage over an electrolyte with unequal mobilities of cations and anions confined between two planar blocking electrodes. To explain this effect we analyse full numerical calculations based on the Poisson-Nernst-Planck equations by means of analytically constructed equivalent electric circuits. Surprisingly, the resulting equivalent circuit has two capacitive elements, rather than one, which introduces a new timescale for electrolyte dynamics. We find a good qualitative agreement between the numerical results and our simple analytic model, which shows that the long-range steady electric field emerges from the different charging rates of cations and anions in the electric double layers.

Keywords

Capacitance, Charge, Colloidal particles, Dielectric response, Double-layer, Flow, Models, Suspensions, Condensed Matter Physics, General Chemistry

Citation

Barnaveli, A & van Roij, R 2024, 'Asymmetric rectified electric fields : nonlinearities and equivalent circuits', Soft Matter, vol. 20, no. 3, pp. 704-716. https://doi.org/10.1039/d3sm01306e