Production of Sr-Ferrite Sub-Micron Powder by Conventional and Sol-Gel Auto-Combustion Methods
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Production of Sr-Ferrite Sub-Micron Powder by Conventional and Sol-Gel Auto-Combustion Methods

Authors: M. Ghobeiti-Hasab

Abstract:

Magnetic powder of Sr-ferrite was prepared by conventional and sol-gel auto-combustion methods. In conventional method, strontium carbonate and ferric oxide powders were mixed together and then mixture was calcined. In sol-gel auto-combustion method, a solution containing strontium nitrate, ferric nitrate and citric acid was heated until the combustion took place automatically; then, as-burnt powder was calcined. Thermal behavior, phase identification, morphology and magnetic properties of powders obtained by these two methods were compared by DTA, XRD, SEM and VSM techniques. According to the results of DTA analysis, formation temperature of Sr-ferrite obtained by conventional and solgel auto-combustion methods were 1300°C and 1000°C, respectively. XRD results confirmed the formation of pure Sr-ferrite at the mentioned temperatures. Plate and hexagonal-shape particles of Srferrite were observed using SEM. The Sr-ferrite powder obtained by sol-gel auto-combustion method had saturation magnetization of 66.03 emu/g and coercivity of 5731 Oe in comparison with values of 58.20 emu/g and 4378 Oe obtained by conventional method.

Keywords: Sr-ferrite, Sol-gel, Magnetic properties, Calcination.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1097323

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[1] A.R. Muxworthy and W. Williams, “Critical superparamagnetic/singledomain grain sizes in interacting magnetite particles implications for magnetosome crystals”, Journal of the Royal Society Interface, vol. 6, pp. 1207–1212, 2009.
[2] G. Benito, M.P. Morales, J. Requena, V. Raposo, M. Vazquez and J.S. Moya, “Barium hexaferrite monodispersed nanoparticles prepared by the ceramic method”, Journal of Magnetism and Magnetic Materials, vol. 234, pp. 65–72, 2001.
[3] E. Sada, H. Kumazawa and H.M. Cho, “Synthesis of barium ferrite ultrafine particles by a hydrothermal method”, Industrial & Engineering Chemistry Research, vol. 30, pp. 1319–1323, 1991.
[4] T.S. Chin, S.L. Hsu and M.C. Deng, “Barium ferrite particulates prepared by a salt-melt method”, Journal of Magnetism and Magnetic Materials, vol. 120, pp. 64–68, 1993.
[5] S.R. Janasi, M. Emura, F.J.G. Landgraf and D. Rodrigues, “The effects of synthesis variables on the magnetic properties of co-precipitated barium ferrite powders”, Journal of Magnetism and Magnetic Materials, vol. 238, pp. 168–172, 2002.
[6] M. Ghobeiti Hasab and Z. Shariati, “Magnetic properties of Sr-ferrite nano-powder synthesized by sol-gel auto-combustion method”, International Journal of Chemical, Nuclear, Metallurgical and Materials Engineering, vol. 8, pp. 965–968, 2014.
[7] M. Ghobeiti Hasab, S.A. Seyyed Ebrahimi and A. Badiei, “The effect of surfactant hydrocarbon tail length on the crystallite size of Sr-hexaferrite powders synthesized by a sol–gel auto-combustion method”, Journal of Magnetism and Magnetic Materials, vol. 310, pp. 2477–2479, 2007.
[8] M. Ghobeiti Hasab, S.A. Seyyed Ebrahimi and A. Badiei, “Comparison of the effects of cationic, anionic and nonionic surfactants on the properties of Sr-hexaferrite nanopowder synthesized by a sol–gel autocombustion method”, Journal of Magnetism and Magnetic Materials, vol. 316, pp. 13–15, 2007.
[9] M. Ghobeiti Hasab, S.A. Seyyed Ebrahimi and A. Badiei, “An investigation on physical properties of strontium hexaferrite nanopowder synthesized by a sol–gel auto-combustion process with addition of cationic surfactant, Journal of the European Ceramic Society, vol. 27, pp. 3637–3640, 2007.
[10] M. Ghobeiti Hasab, S.A. Seyyed Ebrahimi and A. Badiei, “Effect of different fuels on the strontium hexaferrite nanopowder synthesized by a surfactant-assisted sol–gel auto-combustion method, Journal of Non- Crystalline Solids, vol. 353, pp. 814–816, 2007.
[11] M. Ghobeiti Hasab, S.A. Seyyed Ebrahimi and R. Dehghan, “Surfactantassisted sol-gel auto-combustion synthesis of Sr-hexaferrite nanocrystalline powder using different fuels and basic agents”, International Journal of Modern Physics, vol. 5, pp.744–751, 2012.