Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition

In this paper we study ways to control the morphology and properties of zinc oxide nanostructures, which are produced by pulsed electrochemical deposition The effect of mixing of electrolyte, changes in the shape of rectangular pulses of the cathode-substrate potential, as well as the electrolyte co...

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Main Authors: N.P. Klochko, G.S. Khrypunov, Y.O. Myagchenko, E.E. Melnychuk, V.R. Kopach, K.S. Klepikova, V.M. Lyubov, A.V. Kopach
Format: Article
Language:English
Published: Sumy State University 2014-11-01
Series:Журнал нано- та електронної фізики
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Online Access:http://jnep.sumdu.edu.ua/download/numbers/2014/4/articles/jnep_2014_V6_04030.pdf
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author N.P. Klochko
G.S. Khrypunov
Y.O. Myagchenko
E.E. Melnychuk
V.R. Kopach
K.S. Klepikova
V.M. Lyubov
A.V. Kopach
author_facet N.P. Klochko
G.S. Khrypunov
Y.O. Myagchenko
E.E. Melnychuk
V.R. Kopach
K.S. Klepikova
V.M. Lyubov
A.V. Kopach
author_sort N.P. Klochko
collection DOAJ
description In this paper we study ways to control the morphology and properties of zinc oxide nanostructures, which are produced by pulsed electrochemical deposition The effect of mixing of electrolyte, changes in the shape of rectangular pulses of the cathode-substrate potential, as well as the electrolyte composition and duration of the pulsed electrodeposition process on the morphology, crystal structure and optical properties of nanostructured ZnO arrays has been demonstrated. The reasons for the formation by pulsed cathodic electrodeposition without introducing of surfactant growth modifiers into the electrolyte of ZnO arrays, consisting of regular hexagonal nanoplates and their stacks with vertical or horizontal arrangement with respect to the substrates, layers of paraboloid ZnO nanostructures, as well as one-dimensional arrays of zinc oxide, oriented perpendicular to the substrate were analyzed. It was demonstrated by the atomic force microscopy the manufacture of these nanostructured zinc oxide arrays. By the X-ray diffraction and optical spectroscopy the structure and properties of ZnO nanostructures fabricated by pulsed electrochemical deposition were studied.
format Article
id doaj-art-71c749754f89480a9196194e1de3bf9f
institution OA Journals
issn 2077-6772
language English
publishDate 2014-11-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-71c749754f89480a9196194e1de3bf9f2025-08-20T01:58:04ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722014-11-016404030-104030-8Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical DepositionN.P. Klochko0G.S. Khrypunov1Y.O. Myagchenko2E.E. Melnychuk3V.R. Kopach4K.S. Klepikova5V.M. Lyubov6A.V. Kopach7National Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineNational Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineNational Taras Shevchenko University, 60, Volodymyrska Str., 01033 Kyiv, UkraineNational Taras Shevchenko University, 60, Volodymyrska Str., 01033 Kyiv, UkraineNational Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineNational Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineNational Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineNational Technical University “Kharkiv Polytechnic Institute”, 21, Frunze Str., 61002 Kharkov, UkraineIn this paper we study ways to control the morphology and properties of zinc oxide nanostructures, which are produced by pulsed electrochemical deposition The effect of mixing of electrolyte, changes in the shape of rectangular pulses of the cathode-substrate potential, as well as the electrolyte composition and duration of the pulsed electrodeposition process on the morphology, crystal structure and optical properties of nanostructured ZnO arrays has been demonstrated. The reasons for the formation by pulsed cathodic electrodeposition without introducing of surfactant growth modifiers into the electrolyte of ZnO arrays, consisting of regular hexagonal nanoplates and their stacks with vertical or horizontal arrangement with respect to the substrates, layers of paraboloid ZnO nanostructures, as well as one-dimensional arrays of zinc oxide, oriented perpendicular to the substrate were analyzed. It was demonstrated by the atomic force microscopy the manufacture of these nanostructured zinc oxide arrays. By the X-ray diffraction and optical spectroscopy the structure and properties of ZnO nanostructures fabricated by pulsed electrochemical deposition were studied.http://jnep.sumdu.edu.ua/download/numbers/2014/4/articles/jnep_2014_V6_04030.pdfZinc oxidePulse electrodepositionNanostructureAtomic force microscop
spellingShingle N.P. Klochko
G.S. Khrypunov
Y.O. Myagchenko
E.E. Melnychuk
V.R. Kopach
K.S. Klepikova
V.M. Lyubov
A.V. Kopach
Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
Журнал нано- та електронної фізики
Zinc oxide
Pulse electrodeposition
Nanostructure
Atomic force microscop
title Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
title_full Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
title_fullStr Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
title_full_unstemmed Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
title_short Control of Morphology and Properties of Zinc Oxide Nanostructures Manufactured by Pulsed Electrochemical Deposition
title_sort control of morphology and properties of zinc oxide nanostructures manufactured by pulsed electrochemical deposition
topic Zinc oxide
Pulse electrodeposition
Nanostructure
Atomic force microscop
url http://jnep.sumdu.edu.ua/download/numbers/2014/4/articles/jnep_2014_V6_04030.pdf
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