JOURNAL ARTICLE

Trivalent Iron Ion Substituted Co2Z Hexagonal Ferrites for Ultra High Frequency Applications.

Ryo IkedaKoichi KakizakiNobuyuki Hiratsuka

Year: 1999 Journal:   Journal of the Japan Society of Powder and Powder Metallurgy Vol: 46 (6)Pages: 610-614

Abstract

Z-type hexagonal ferrites for ultra high frequency of gigahertz range were prepared by substitution of trivalent iron ions for various metal ions. Thereby improving a sintering process and the addition of lwt.% BaCO3 to calcined powder, single-phase Z-type ferrite was obtained even when we used the conventional ceramic techniques. Initial permeability of Z-type ferrites with composition of Ba3Co2Cux/2Six/2Fe24-xO41 (X=0) was 17.8 which was sufficiently larger than the value previously reported. Moreover, the limit of frequency was 0.635GHz which was as large as previously reported value. In spite of low bulk density (4.28g/cm3), initial permeability of Z-type ferrites with composition of Ba3Co2Cux/2Six/2Fe24-xO41 (X=1) was 9.51 and the limit of frequency was 1.5GHz which were useful and practical values as magnetic materials for ultra high frequency. When the amount of substitutional metal ions increased, initial permeability and resonance frequency were decreased. In substitution by Cu2+ ion and Nbs5+ ion, initial permeability of Z-type ferrite with composition of Ba3Co2Cu2X/3NbX/3Fe24-XO41 (X=1) was 8.1 and the limit of frequency was 1.2GHz which was less than the values of Ba3Co2CuX/2SiX/2Fe24-XO41 (X=0, 1). Quantitative and qualitative analysis indicated that various substitutions have led to the formation of two hexagonal structures.

Keywords:
Ferrite (magnet) Materials science Ion Hexagonal crystal system Sintering Analytical Chemistry (journal) Ceramic Permeability (electromagnetism) Metal Calcination Metallurgy Crystallography Chemistry Composite material Membrane

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Topics

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

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