2012•IEEE Transactions on MagneticsRequires access

Introduction of NiZn-Ferrite Into Co$_{2}$Z-Ferrite and Effects on the Magnetic and Dielectric Properties

Zongliang Zheng, Huaiwu Zhang, John Q. Xiao, Lijun Jia, Feiming Bai

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Abstract

Various amounts of NiZn spinel ferrite (Ni0.5Zn0.5Fe2O4) were introduced into Co2Z hexagonal ferrite (Ba3Co2Fe24O41) by a solid-state reaction method. The phases, microstructures, and magnetic and dielectric properties have been investigated. The results show that the grain size is obviously changed with introducing of NiZn ferrite, and the saturation magnetization increases from 45 emu/g to 55 emu/g. Compared with undoped Co2Z ferrite, the samples doped 15 wt % and 20 wt % NiZn ferrite exhibit much stable μ'and ε'spectrums with frequency. The quality factor is improved to about 80 and the dielectric loss is reduced to 0.005 at 100 MHz.

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What this paper is about

Various amounts of NiZn spinel ferrite (Ni0.5Zn0.5Fe2O4) were introduced into Co2Z hexagonal ferrite (Ba3Co2Fe24O41) by a solid-state reaction method. The phases, microstructures, and magnetic and dielectric properties have been investigated. The results show that the grain size is obviously changed with introducing of NiZn ferrite, and the saturation magnetization increases from 45 emu/g to 55 emu/g. Compared with undoped Co2Z ferrite, the samples doped 15 wt % and 20 wt % NiZn ferrite exhibit much stable μ'and ε'spectrums with frequency. The quality factor is improved to about 80 and the dielectric loss is reduced to 0.005 at 100 MHz.

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Available abstract

Various amounts of NiZn spinel ferrite (Ni0.5Zn0.5Fe2O4) were introduced into Co2Z hexagonal ferrite (Ba3Co2Fe24O41) by a solid-state reaction method. The phases, microstructures, and magnetic and dielectric properties have been investigated. The results show that the grain size is obviously changed with introducing of NiZn ferrite, and the saturation magnetization increases from 45 emu/g to 55 emu/g. Compared with undoped Co2Z ferrite, the samples doped 15 wt % and 20 wt % NiZn ferrite exhibit much stable μ'and ε'spectrums with frequency. The quality factor is improved to about 80 and the dielectric loss is reduced to 0.005 at 100 MHz.

Key concepts: Ferrite (magnet), Materials science, Physics, Composite material

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