Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry

In this contribution, stable nanomagnetite slurry have been successfully prepared by coprecipitation method. The synthesis parameters, such as reaction temperature, heating time, surfactant concentration and precipitating agent addition rate affected magnetic properties of synthetic nanomagnetite sl...

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Main Authors: Bagheri, S., Ramimoghadam, D., TermehYousefi, A., Abd Hamid, S.B.
Format: Article
Izdano: Elsevier 2015
Teme:
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author Bagheri, S.
Ramimoghadam, D.
TermehYousefi, A.
Abd Hamid, S.B.
author_facet Bagheri, S.
Ramimoghadam, D.
TermehYousefi, A.
Abd Hamid, S.B.
author_sort Bagheri, S.
collection UM
description In this contribution, stable nanomagnetite slurry have been successfully prepared by coprecipitation method. The synthesis parameters, such as reaction temperature, heating time, surfactant concentration and precipitating agent addition rate affected magnetic properties of synthetic nanomagnetite slurries were also investigated. We discovered the optimum reaction parameters based on the highest saturation magnetization obtained under our experimental condition to disperse magnetite nanoparticles in the aqueous medium using dodecanoic acid as a surfactant. The highest saturation magnetization was achieved when 0.5:1 mole ratio of dodecanoic acid to magnetite was used and NH4OH with an addition rate of 5 ml min(-1) was added to the solution while time and temperature for heating were 45 min at 80 degrees C. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
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institution Universiti Malaya
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spelling um.eprints-161922017-07-08T03:08:25Z http://eprints.um.edu.my/16192/ Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry Bagheri, S. Ramimoghadam, D. TermehYousefi, A. Abd Hamid, S.B. Q Science (General) QD Chemistry In this contribution, stable nanomagnetite slurry have been successfully prepared by coprecipitation method. The synthesis parameters, such as reaction temperature, heating time, surfactant concentration and precipitating agent addition rate affected magnetic properties of synthetic nanomagnetite slurries were also investigated. We discovered the optimum reaction parameters based on the highest saturation magnetization obtained under our experimental condition to disperse magnetite nanoparticles in the aqueous medium using dodecanoic acid as a surfactant. The highest saturation magnetization was achieved when 0.5:1 mole ratio of dodecanoic acid to magnetite was used and NH4OH with an addition rate of 5 ml min(-1) was added to the solution while time and temperature for heating were 45 min at 80 degrees C. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved. Elsevier 2015 Article PeerReviewed Bagheri, S. and Ramimoghadam, D. and TermehYousefi, A. and Abd Hamid, S.B. (2015) Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry. International Journal of Hydrogen Energy, 40 (46). pp. 16178-16183. ISSN 0360-3199, DOI: 10.1016/j.ijhydene.2015.09.050
spellingShingle Q Science (General)
QD Chemistry
Bagheri, S.
Ramimoghadam, D.
TermehYousefi, A.
Abd Hamid, S.B.
Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title_full Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title_fullStr Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title_full_unstemmed Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title_short Effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
title_sort effects of synthetic explanatory variable on saturation magnetization of colloidal nanomagnetite slurry
topic Q Science (General)
QD Chemistry
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