Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field

We observe and study the reflection and interference in the two-layer thin film composed of a conductive layer of ITO and dispersed particles of magnetic fluid (magnetite). In an electric field the equivalent thickness of the membrane is increased by varying the thickness of the second layer. At a c...

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Main Authors: V.V. Chekanov, N.V. Kandaurova, V.S. Chekanov
Format: Article
Language:English
Published: Sumy State University 2015-12-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04041.pdf
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author V.V. Chekanov
N.V. Kandaurova
V.S. Chekanov
author_facet V.V. Chekanov
N.V. Kandaurova
V.S. Chekanov
author_sort V.V. Chekanov
collection DOAJ
description We observe and study the reflection and interference in the two-layer thin film composed of a conductive layer of ITO and dispersed particles of magnetic fluid (magnetite). In an electric field the equivalent thickness of the membrane is increased by varying the thickness of the second layer. At a certain value of the electric field the layer becomes unstable, its thickness varies periodically, autowave process leading to the characteristic active centers (pacemakers), spiral waves (reverberators) was observed.
format Article
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institution DOAJ
issn 2077-6772
language English
publishDate 2015-12-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-e0d95d99635d48e08e0600fc0e7efca52025-08-20T03:06:08ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722015-12-017404041-104041-3Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric FieldV.V. Chekanov0N.V. Kandaurova1V.S. Chekanov2North Caucasus Federal University 2, Kulakova Prosp., 355029 Stavropol, RussiaNorth Caucasus Federal University 2, Kulakova Prosp., 355029 Stavropol, RussiaNorth Caucasus Federal University 2, Kulakova Prosp., 355029 Stavropol, RussiaWe observe and study the reflection and interference in the two-layer thin film composed of a conductive layer of ITO and dispersed particles of magnetic fluid (magnetite). In an electric field the equivalent thickness of the membrane is increased by varying the thickness of the second layer. At a certain value of the electric field the layer becomes unstable, its thickness varies periodically, autowave process leading to the characteristic active centers (pacemakers), spiral waves (reverberators) was observed.http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04041.pdfMagnetic fluidElectroreflectionThin membraneReflectanceReflected light intensityInstabilityAutowave
spellingShingle V.V. Chekanov
N.V. Kandaurova
V.S. Chekanov
Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
Журнал нано- та електронної фізики
Magnetic fluid
Electroreflection
Thin membrane
Reflectance
Reflected light intensity
Instability
Autowave
title Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
title_full Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
title_fullStr Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
title_full_unstemmed Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
title_short Calculation of the Membrane Thickness of Magnetite Nanoparticles on the Surface of the Transparent Conductive Electrode in the Electric Field
title_sort calculation of the membrane thickness of magnetite nanoparticles on the surface of the transparent conductive electrode in the electric field
topic Magnetic fluid
Electroreflection
Thin membrane
Reflectance
Reflected light intensity
Instability
Autowave
url http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04041.pdf
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AT nvkandaurova calculationofthemembranethicknessofmagnetitenanoparticlesonthesurfaceofthetransparentconductiveelectrodeintheelectricfield
AT vschekanov calculationofthemembranethicknessofmagnetitenanoparticlesonthesurfaceofthetransparentconductiveelectrodeintheelectricfield