Cation distributions estimated using the magnetic moments of the spinel ferrites Co sub(1-x)Cr sub(x)Fe sub(2)O sub(4) at 10 K

(A)[B] sub(2)O sub(4) ferrite samples with the composition Co sub(1-x)Cr sub(x) Fe sub(2)O sub(4) (0.0 [< or =] x [< or =] 1.0) are prepared using a hydrothermal method, and subjected to calcining in a tube furnace with an argon-flow at 1673 K for 2 h. X-ray diffraction patterns indicate that...

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Veröffentlicht in:Chinese physics B 2014-10, Vol.23 (10), p.107503-1-107503-10
Hauptverfasser: Shang, Zhi-Feng, Qi, Wei-Hua, Ji, Deng-Hui, Xu, Jing, Tang, Gui-De, Zhang, Xiao-Yun, Li, Zhuang-Zhi, Lang, Li-Li
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Sprache:eng
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Zusammenfassung:(A)[B] sub(2)O sub(4) ferrite samples with the composition Co sub(1-x)Cr sub(x) Fe sub(2)O sub(4) (0.0 [< or =] x [< or =] 1.0) are prepared using a hydrothermal method, and subjected to calcining in a tube furnace with an argon-flow at 1673 K for 2 h. X-ray diffraction patterns indicate that each of all the samples has a single phase cubic spinel structure with a space group of F d3m. Magnetic measurements show that the saturation magnetization decreases with as the Cr content x increases. The cation distribution of the samples is estimated by fitting the dependence of the magnetic moments on x at 10 K, using the quantum mechanical model previously proposed by our group. The calculated sum of the content values of the Cr super(3+) and Cr super(2+) cations occupying the (A) sites increases as the value of x increases. In the fitting process, the magnetic moment directions of the Cr super(3+) and Cr super(2+) cations are assumed to be antiparallel to those of the Fe and Co cations, respectively, which is in accordance with Hund's rules.
ISSN:1674-1056
1741-4199
DOI:10.1088/1674-1056/23/10/107503