Title: | Development of Multifunctional Magnetic Core Nanoparticles |
Author(s): | Mahmed, Norsuria |
Date: | 2013 |
Language: | en |
Pages: | 114 + app. 81 |
Department: | Materiaalitekniikan laitos Department of Materials Science and Engineering |
ISBN: | 978-952-60-5106-2 (electronic) 978-952-60-5105-5 (printed) |
Series: | Aalto University publication series DOCTORAL DISSERTATIONS, 58/2013 |
ISSN: | 1799-4942 (electronic) 1799-4934 (printed) 1799-4934 (ISSN-L) |
Supervising professor(s): | Hannula, Simo-Pekka, Prof., Aalto University, Department of Materials Science and Engineering, Finland |
Thesis advisor(s): | Hannula, Simo-Pekka, Prof., Aalto University, Department of Materials Science and Engineering, Finland |
Subject: | Materials science |
Keywords: | magnetite, silica, silver, silver chloride, pulsed electric current sintering, phase transformation, multifunctional, ferromagnetic |
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Abstract:Multifunctional magnetic materials have a great importance in various fields of application, e.g., material science, chemistry, physics, environmental chemistry and biomedicine. Although a large number of scientific papers already describe the synthesis of multifunctional materials by various methods and technologies, a simple, fast and economically feasible synthesis procedure to combine all the materials in one system is still of interest.
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Parts:[Publication 1]: Mahmed, N., Heczko, O., S.derberg, O. & Hannula, S-P (2011) Room temperature synthesis of magnetite (Fe3-δO4) nanoparticles by a simple reverse co-precipitation method. IOP Conference Series: Materials Science and Engineering, 18, 032020.[Publication 2]: Mahmed, N., Heczko, O., Lancok, A. & Hannula, S-P. The magnetic and oxidation behavior of bare and silica-coated iron oxide nanoparticles synthesized by reverse co-precipitation of ferrous ion (Fe2+) in ambient atmosphere. Submitted to Journal of Magnetism and Magnetic Materials.[Publication 3]: Mahmed, N., Jiang, H., Heczko, O., S.derberg, O. & Hannula, S-P (2012) Influence of different synthesis approach on doping behavior of silver nanoparticles onto the iron oxide-silica coreshell surfaces. Journal of Nanoparticle Research, 14, 987.[Publication 4]: Mahmed, N., Heczko, O. & Hannula, S-P (2013) Influence of hydrochloric acid concentrations on the formation of AgCl-doped iron oxide-silica coreshell structures. Advances in Science and Technology, 77, 184–189.[Publication 5]: Mahmed, N., Heczko, O., Maki, R., S.derberg, O., Haimi, E. & Hannula, SP (2012) Novel iron oxide-silica coreshell powders compacted by using pulsed electric current sintering: Optical and magnetic properties. Journal of the European Ceramic Society, 32, 2981–2988.[Publication 6]: Mahmed, N., Friman, M. & Hannula, S-P (2012) Phase transformation of iron oxide-silica coreshell structure during differential scanning calorimetry and pulsed electric current sintering processes: A comparison. Materials Letters, 85, 18–20.[Publication 7]: Mahmed, N., Larismaa, J., Heczko, O., Cura, M. E. & Hannula, S-P (2013) Influence of sintering temperature on the properties of pulsed electric current sintered hybrid coreshell powders. Journal of the European Ceramic Society. |
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