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- W1967214905 abstract "The dewetting of a nanoscale water film under the action of an electric field is studied with molecular dynamics simulation. Results show that the onset of film rupture is induced by a spontaneous instability mechanism. After the rupture, the rim of the film recedes with a dynamic contact angle. The transient streamlines at a typical moment show that the liquid molecule near the rim moves almost vertically upwards, driven by the repulsive force from the solid surface. The oscillatory behavior of the density profile, resulting from the interaction between attractive and repulsive potentials, is observed near the solid surface. The analyses of the dewetting process demonstrate that the applied electric field will increase the wettability of graphite walls, thus suppressing the rupture, reducing the dynamic contact angle, and raising the liquid density adjacent to both the solid and liquid-vacuum surfaces. Owing to the polarity of water, the positive voltage produces stronger influences than the negative one." @default.
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- W1967214905 date "2008-10-01" @default.
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- W1967214905 title "Dewetting of nanometer thin films under an electric field" @default.
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- W1967214905 doi "https://doi.org/10.1063/1.2998845" @default.
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