JOURNAL ARTICLE

High Frequency Properties of Li Substituted Co2Z Hexagonal Ferrites

Junichi NakaneK. KamishimaKoichi KakizakiNobuyuki Hiratsuka

Year: 2007 Journal:   Journal of the Japan Society of Powder and Powder Metallurgy Vol: 54 (4)Pages: 232-235

Abstract

Z-type hexagonal ferrite samples with Ba3Co2-2xLixFe24+xO41 (x=0∼1.0) were prepared from stoichiometric mixtures of BaCO3, CoO, Li2Co3 and α-Fe2O3, by calcinning at 1250°C and then sintering at 1275°C. The single phase of the Z-type was confirmed for the crystal structure of these samples with x=0∼0.5 by X-ray diffraction analysis. The sample with x=0 showed μ' of 8 at 50MHz. The maximum μ' was 24.5 at x=0.3. The Snoek's product of μ' × fr was 9GHz at x=0 and then increased to 15GHz at x=0.1∼0.3. The bulk density took a maximum at x=0.3, and the coercivity had a minimum at x=0.3. Therfore, high frequency properties of Co2Z ferrite are specifically improved by the Li+−Fe3+ ions substitution with x=0.3.

Keywords:
Hexagonal crystal system Coercivity Sintering Diffraction Stoichiometry Materials science Ferrite (magnet) Analytical Chemistry (journal) Ion Hexagonal phase Crystallography Crystal structure Phase (matter) Single phase X-ray crystallography Metallurgy Chemistry Condensed matter physics Physical chemistry Composite material Physics Optics

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Citation History

Topics

Magnetic Properties and Synthesis of Ferrites
Physical Sciences →  Materials Science →  Materials Chemistry
Electromagnetic wave absorption materials
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Advancements in Battery Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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