The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques

Purpose – to study the structural parameters of the magnetite particles surrounded by the surfactant in the various carrier liquids using SAXS and based on the magnetization curve obtained applying ballistic method. The samples of the magnetite magnetic fluid based on water, engine oil and kerosene...

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Main Authors: P.A. Ryapolov, V.M. Polunin, A.P. Kuzmenko, S.G. Emelianov, E.Y. Orlov, A.S. Chekadanov
Format: Article
Language:English
Published: Sumy State University 2015-12-01
Series:Журнал нано- та електронної фізики
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Online Access:http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04003.pdf
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author P.A. Ryapolov
V.M. Polunin
A.P. Kuzmenko
S.G. Emelianov
E.Y. Orlov
A.S. Chekadanov
author_facet P.A. Ryapolov
V.M. Polunin
A.P. Kuzmenko
S.G. Emelianov
E.Y. Orlov
A.S. Chekadanov
author_sort P.A. Ryapolov
collection DOAJ
description Purpose – to study the structural parameters of the magnetite particles surrounded by the surfactant in the various carrier liquids using SAXS and based on the magnetization curve obtained applying ballistic method. The samples of the magnetite magnetic fluid based on water, engine oil and kerosene were investigated in this paper. Methodology – three samples of magnetic fluid were chosen for studying. Samples No 1 and No 2 were obtained at the UNESCO department of “Energy Conservation and Renewable Energy Sources”, Belarusian National Technical University. Sample No 3 was obtained in the Fundamental Scientific Research Laboratory of Applied Ferrohydrodynamics of Ivanovo State Power Engineering University. SAXS experiment was conducted using Anton Paar SAXSess mc2 analyzer at the Regional Centre of Nanotechnology of Southwest State University. Originality / value – The value of this work is to obtain new data on the physical parameters of the magnetic fluid samples. Findings – the derived surfactant shell width, which for the samples No 2, 3 was 1,8-1,9 nm, for the sample No 1 surfactant shell width was 3.5 nm, the excess of the calculated width of the surfactant layer can be explained due to the presence of a double layer of stabilizer.
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issn 2077-6772
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publisher Sumy State University
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series Журнал нано- та електронної фізики
spelling doaj-art-529cf768a70b4948bdbfab47001d0ae42025-08-20T03:36:30ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722015-12-017404003-104003-3The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA TechniquesP.A. Ryapolov0V.M. Polunin1A.P. Kuzmenko2S.G. Emelianov3E.Y. Orlov4A.S. Chekadanov5South-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaSouth-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaSouth-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaSouth-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaSouth-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaSouth-West State University, 94, 50 let Octyabrya St., 305040 Kursk, RussiaPurpose – to study the structural parameters of the magnetite particles surrounded by the surfactant in the various carrier liquids using SAXS and based on the magnetization curve obtained applying ballistic method. The samples of the magnetite magnetic fluid based on water, engine oil and kerosene were investigated in this paper. Methodology – three samples of magnetic fluid were chosen for studying. Samples No 1 and No 2 were obtained at the UNESCO department of “Energy Conservation and Renewable Energy Sources”, Belarusian National Technical University. Sample No 3 was obtained in the Fundamental Scientific Research Laboratory of Applied Ferrohydrodynamics of Ivanovo State Power Engineering University. SAXS experiment was conducted using Anton Paar SAXSess mc2 analyzer at the Regional Centre of Nanotechnology of Southwest State University. Originality / value – The value of this work is to obtain new data on the physical parameters of the magnetic fluid samples. Findings – the derived surfactant shell width, which for the samples No 2, 3 was 1,8-1,9 nm, for the sample No 1 surfactant shell width was 3.5 nm, the excess of the calculated width of the surfactant layer can be explained due to the presence of a double layer of stabilizer.http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04003.pdfMagnetic fluidMagnetite nanoparticlesStabilizerSAXSMagnetization curv
spellingShingle P.A. Ryapolov
V.M. Polunin
A.P. Kuzmenko
S.G. Emelianov
E.Y. Orlov
A.S. Chekadanov
The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
Журнал нано- та електронної фізики
Magnetic fluid
Magnetite nanoparticles
Stabilizer
SAXS
Magnetization curv
title The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
title_full The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
title_fullStr The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
title_full_unstemmed The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
title_short The Analysis of the Structural Parameters of Magnetic Fluids with SAXS and MGA Techniques
title_sort analysis of the structural parameters of magnetic fluids with saxs and mga techniques
topic Magnetic fluid
Magnetite nanoparticles
Stabilizer
SAXS
Magnetization curv
url http://jnep.sumdu.edu.ua/download/numbers/2015/4/articles/jnep_2015_V7_04003.pdf
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