Liquid flow reversibly creates a macroscopic surface charge gradient

Publication date

2021-07-02

Authors

Ober, Patrick
Boon, Willem QuirinISNI 000000050633771X
Dijkstra, MarjoleinISNI 0000000358257928
Backus, Ellen H.G.
Roij, René vanISNI 0000000392993654
Bonn, Mischa

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

The charging and dissolution of mineral surfaces in contact with flowing liquids are ubiquitous in nature, as most minerals in water spontaneously acquire charge and dissolve. Mineral dissolution has been studied extensively under equilibrium conditions, even though non-equilibrium phenomena are pervasive and substantially affect the mineral-water interface. Here we demonstrate using interface-specific spectroscopy that liquid flow along a calcium fluoride surface creates a reversible spatial charge gradient, with decreasing surface charge downstream of the flow. The surface charge gradient can be quantitatively accounted for by a reaction-diffusion-advection model, which reveals that the charge gradient results from a delicate interplay between diffusion, advection, dissolution, and desorption/adsorption. The underlying mechanism is expected to be valid for a wide variety of systems, including groundwater flows in nature and microfluidic systems.

Keywords

General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy

Citation

Ober, P, Boon, W Q, Dijkstra, M, Backus, E H G, van Roij, R & Bonn, M 2021, 'Liquid flow reversibly creates a macroscopic surface charge gradient', Nature Communications, vol. 12, no. 1, 4102. https://doi.org/10.1038/s41467-021-24270-x