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Synthesis of high-coercivity cobalt ferrite nanocrystals

Published: 01 April 2009 Publication History

Abstract

Cobalt ferrite (CoFe"2O"4) possesses excellent chemical stability, good mechanical hardness and a large positive first-order crystalline anisotropy constant, which made this ferrite a promising candidate for magneto-optical recording media. In addition to precise control on the composition and structure of CoFe"2O"4, the success of its practical application will depend on the capability of controlling particle size at the nanoscale. This size-controlled synthesis approach became possible by modifying the oversaturation conditions during ferrite formation in water. Optimum oversaturation was achieved by monitoring of the feeding flow-rate of reactant solutions. X-ray diffraction (XRD) and Fourier-transform infrared spectroscopy (FT-IR) analyses confirmed the formation of the ferrite structure after a reaction time as short as 5min. M-H measurements verified the strong influence of synthesis conditions and crystal size on the magnetic properties of ferrite nanocrystals. The coercivity values increased from 210 up to 5840Oe under optimum synthesis conditions.

References

[1]
Zhang, F., Kantake, S., Kitamoto, Y. and Abe, M., Spin-spray ferrite-plated Co ferrite films with high coercivity for perpendicular magnetic recording media. IEEE Trans. Magn. v35. 2751-2753.
[2]
Arulmurugan, R., Vaidyanathan, G., Sendhilnathan, S. and Jeyadevan, B., Mn-Zn ferrite nanoparticles for ferrofluid preparation: study on thermal-magnetic properties. J. Magn. Magn. Mater. v298. 83-94.
[3]
Berkowitz, A.E. and Schuele, W., Properties of some ferrite micropowders. J. Appl. Phys. v30. 134S-135S.
[4]
Chinnasamy, C.N., Jeyadevan, B., Perales-Perez, O., Shinoda, K., Tohji, K. and Kasuya, A., Growth dominant co-precipitation process to achieve high coercivity at room temperature in CoFe2O4 nanoparticles. IEEE Trans. Magn. v38. 2640-2642.
[5]
Perales-Perez, O., Sasaki, H., Kasuya, A., Jeyadevan, B., Tohji, K., Hihara, T. and Sumiyama, K., Production of monodispersed particles by using effective size selection. J. Appl. Phys. v91. 6958-6960.
[6]
Cedeno-Mattei, Y., Perales-Perez, O., Tomar, M.S., Roman, F., Voyles, P.M. and Stratton, W.G., Tuning of magnetic properties in cobalt ferrite nanocrystals. J. Appl. Phys. v103. 07E512
  1. Synthesis of high-coercivity cobalt ferrite nanocrystals

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    Published In

    cover image Microelectronics Journal
    Microelectronics Journal  Volume 40, Issue 4-5
    April, 2009
    226 pages

    Publisher

    Elsevier Science Publishers B. V.

    Netherlands

    Publication History

    Published: 01 April 2009

    Author Tags

    1. Cobalt ferrite
    2. High coercivity
    3. Modified coprecipitation route
    4. Nanocrystals

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