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Fizika i Tekhnika Poluprovodnikov, 2016, Volume 50, Issue 3, Pages 357–368
(Mi phts6517)
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This article is cited in 16 scientific papers (total in 16 papers)
Micro- and nanocrystalline, porous, composite semiconductors
On controlling the hydrophobicity of nanostructured zinc-oxide layers grown by pulsed electrodeposition
A. V. Klochkoa, E. S. Klepikovaa, V. R. Kopacha, G. S. Khrypunova, Yu. A. Myagchenkob, Е. Е. Мельничукb, V. M. Lyubova, A. V. Kopacha a Khar'kov Polytechnical University
b National Taras Shevchenko University of Kyiv
Abstract:
The possibility of fabricating highly hydrophobic nanostructured zinc-oxide layers by the inexpensive method of pulsed electrodeposition from aqueous solutions without water-repellent coatings, adapted for large-scale production, is shown. The conditions of the deposition of highly hydrophobic nanostructured zinc-oxide layers exhibiting the “rose-petal” effect with specific morphology, optical properties, crystal structure and texture are determined. The grown ZnO nanostructures are promising for micro- and nanoelectronics as an adaptive material able to reversibly transform to the hydrophilic state upon exposure to ultraviolet radiation.
Keywords:
Contact Angle, Water Drop, Pulse Electrodeposition, Wenzel State, Adaptive Material.
Received: 18.06.2015 Accepted: 08.07.2015
Citation:
A. V. Klochko, E. S. Klepikova, V. R. Kopach, G. S. Khrypunov, Yu. A. Myagchenko, Е. Е. Мельничук, V. M. Lyubov, A. V. Kopach, “On controlling the hydrophobicity of nanostructured zinc-oxide layers grown by pulsed electrodeposition”, Fizika i Tekhnika Poluprovodnikov, 50:3 (2016), 357–368; Semiconductors, 50:3 (2016), 352–363
Linking options:
https://www.mathnet.ru/eng/phts6517 https://www.mathnet.ru/eng/phts/v50/i3/p357
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Abstract page: | 44 | Full-text PDF : | 52 |
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