Crystallization and magnetic property of iron oxide nanoparticles precipitated in silica glass matrix

Crystallization and magnetic property of Fe 2O 3 nanoparticle precipitated in SiO 2 matrix was investigated. Fe 2O 3/SiO 2 nanocomposite thin film was obtained by annealing of the amorphous Fe–Si–O thin film deposited by RF-magnetron sputtering of (α-Fe 2O 3) 1− x /(SiO 2) x composite targets. The F...

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Veröffentlicht in:Journal of the European Ceramic Society 2011-11, Vol.31 (14), p.2459-2462
Hauptverfasser: Masubuchi, Y., Sato, Y., Sawada, A., Motohashi, T., Kiyono, H., Kikkawa, S.
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Sprache:eng
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Zusammenfassung:Crystallization and magnetic property of Fe 2O 3 nanoparticle precipitated in SiO 2 matrix was investigated. Fe 2O 3/SiO 2 nanocomposite thin film was obtained by annealing of the amorphous Fe–Si–O thin film deposited by RF-magnetron sputtering of (α-Fe 2O 3) 1− x /(SiO 2) x composite targets. The Fe 2O 3 crystallite size increased with decreasing SiO 2 area ratio, x of the target and increasing annealing temperature. ɛ-Fe 2O 3 with the crystallite size of 20–30 nm was obtained after annealing the film deposited in SiO 2 area ratio, x = 0.33–0.42 at 900 °C. Lower SiO 2 area ratio ( x) than 0.25 and higher annealing temperature resulted in precipitation of α-Fe 2O 3 with the larger crystallite size than 40 nm. In the case of SiO 2 area ratio, x ≥ 0.50, the annealed film was amorphous and showed higher magnetization and smaller coercivity due to the precipitation of very small crystalline γ-Fe 2O 3. The ɛ-Fe 2O 3/SiO 2 composite thin film showed ferromagnetic hysteresis with coercive force of 0.14 T.
ISSN:0955-2219
1873-619X
DOI:10.1016/j.jeurceramsoc.2011.02.016