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- W2570168093 abstract "We developed a special electrochemical cell enabling quantitative analysis and<italic>in situ</italic>X-ray nanotomography of metal/electrolyte interfaces subject to corrosion. Using this cell and applying the nodoid model to describe menisci formed on tungsten wires during anodization, the evolution of the electrolyte surface tension, the concentration of reaction products, and the meniscus contact angle were studied. In contrast to the electrowetting effect, where the applied electric field decreases the contact angle of electrolytes, anodization of the tungsten wires increases the contact angle of the meniscus. Hence, an electric field favors dewetting rather than wetting of the newly formed surface. The discovered effect opens up new opportunities for the control of wetting phenomena and calls for the revision of existing theories of electrowetting." @default.
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- W2570168093 date "2017-01-01" @default.
- W2570168093 modified "2023-09-28" @default.
- W2570168093 title "Is an electric field always a promoter of wetting? Electro-dewetting of metals by electrolytes probed by in situ X-ray nanotomography" @default.
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- W2570168093 doi "https://doi.org/10.1039/c6fd00239k" @default.
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