Preparation and Characterization of Spinel-Type Nanocrystalline ZnFe2O4 by Radiation Method

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Abstract:

A new electron beam radiation method was developed to prepare spinel-type nanocrystalline ZnFe2O4 at room temperature and ambient pressure, without any kind of catalysts. The structure, morphology and size were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM), infrared spectroscopy (IR). The obtained Nanocrystalline ZnFe2O4 particles have Spinel structure, spherical shape morphology and a mean particle size distribution of 20 and 40 nm.

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Solid State Phenomena (Volumes 121-123)

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327-330

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March 2007

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© 2007 Trans Tech Publications Ltd. All Rights Reserved

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[1] H.H. Hamdeh, J.C. Ho, S.A. Oliver, R.J. Willey, G. Oliveri, G. Busca. J. Appl. Phys. Vol. 81 (1997), p.1851.

Google Scholar

[2] G.F. Goya, H.R. Richenberg, M. Chen, W.B. Yelon. J. Appl. Phys. Vol. 87 (2000), p.8005.

Google Scholar

[3] M.T. Clerk, B.J. Evans, IEEE Trans. Magn. Vol. 33 (1997), p.3745.

Google Scholar

[4] T. Kamiyama, K. Haneda, T. Sato, S. Ikeda, H. Asano. Solid State. Vol. 81 (1992), p.563.

Google Scholar

[5] H. Ehrhardt, S.J. Campbell, M. Hofmann. J. Alloys Compounds. Vol. 339 (2002) , p.255.

Google Scholar

[6] Chu Xiangfeng, Liu Xingqin�Meng Guangyao. Semiconductors Sensors and Actuators, Vol. 55 (1999), p.19.

Google Scholar

[7] S. Bera , A. A. M. Prince , S. Velmurugan , P. S. Raghavan. J. Materials Science, Vol. 22(2001), p.5379.

Google Scholar

[8] L.D. Tung, V. Kolesnichenko, G. Caruntu, D. Caruntu. Physica B. Vol . 319 (2002), p.116.

Google Scholar

[9] S. Zhuiykov, T. Ono, N. Yamazoe, N. Miura. Solid State Ionics. Vol . 152/ 153 (2002), p.801.

DOI: 10.1016/s0167-2738(02)00331-4

Google Scholar

[10] Waldron R. D. Phys. Rev. Vol. 99(1955), p.1727.

Google Scholar