DocumentCode :
42951
Title :
The Effects of Sintering Temperature on the Dielectric Behavior and Magnetic Property of Ferrimagnetic {\\hbox {Tb}}_{3}{\\hbox {Fe}}_{5}{\\hbox {O}}_{12}
Author :
Ping-chun Tsai ; Xiaoding Qi ; Yu-Jhan Siao
Author_Institution :
Dept. of Mater. Sci. & Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Volume :
49
Issue :
7
fYear :
2013
fDate :
Jul-13
Firstpage :
4307
Lastpage :
4310
Abstract :
High-purity Tb3Fe5O12 samples were prepared by the solid-state reaction method at 1300-1390 $,,^{circ} $C and their magnetic and dielectric properties were studied. The results showed that although the magnetic properties did not change notably with the processing conditions used, the dielectric behaviors of the polycrystalline Tb3Fe5O12 were affected significantly. The increase of sintering temperature from 1300 to 1390°C resulted in a dramatic increase in bulk density, dielectric constant and loss-peak frequency, but a decrease in the $alpha$ parameter of the Cole-Cole equation. The Fe2+-Fe3+ hopping process was proposed for the observed dielectric behaviors. The hopping activation energy, calculated by the Arrhenius plots, decreased from 0.438 to 0.289 eV as the sintering temperature increased from 1300 to 1390°C . The Cole-Cole equation could be used to describe the relaxation behaviors of these samples and the calculated α parameter decreased from 0.305 to 0.059. High sintering temperature had both the effects of improving crystallinity and enhancing the Fe3+ → Fe2+ reduction. The former lowered the hopping activation energy and narrowed the distribution of the relaxation time (as indicated by α → 0), while the later increased the dielectric constant and loss, as well as the DC conduction in the low frequency region.
Keywords :
dielectric losses; dielectric relaxation; ferrimagnetic materials; hopping conduction; magnetisation; permittivity; sintering; terbium compounds; Arrhenius plots; Cole-Cole equation; DC conduction; Tb3Fe5O12; bulk density; dielectric constant; dielectric loss; dielectric property; dielectric relaxation; ferrimagnetic material; hopping activation energy; hopping process; loss-peak frequency; magnetic property; magnetization; sintering temperature effect; solid-state reaction method; temperature 1300 degC to 1390 degC; Dielectrics; Equations; Frequency measurement; Garnets; Iron; Temperature; Temperature measurement; Cole–Cole equation; Terbium iron garnet; dielectric behavior; ferrimagnetism;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2245111
Filename :
6559341
Link To Document :
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