DocumentCode :
800495
Title :
Complex Permittivity and Permeability of Co _2 U (Ba _4 Co _2 Fe _36 O
Author :
Dimri, Mukesh C. ; Kashyap, Subhash C. ; Dube, Dinesh C.
Author_Institution :
Dept. of Phys., Indian Inst. of Technol., New Delhi
Volume :
42
Issue :
11
fYear :
2006
Firstpage :
3635
Lastpage :
3640
Abstract :
We measured dielectric, magnetic, and microwave properties of Co 2U hexaferrite (Ba4Co2Fe36O 60) polycrystalline bulk and composite thick film samples, and studied the effect of annealing temperature on phase formation and microstructure. We synthesized the bulk samples from a precursor prepared by the citrate method. The values of dielectric constant at radio frequencies (50 Hz-1 MHz) of the bulk Co2U12 sample sintered at 1200degC are much higher, and the resistivities are lower, compared to M-type barium hexaferrites. Coercivity is also low, having a value of 5 G for the Co2U12 sample, whereas the saturation magnetization value is 59 emu/g, which is comparable to that of M-type hexaferrites. We also measured the complex permittivity and permeability for Co2U12 samples at microwave frequencies and found the values high compared to M-type barium hexaferrite at these frequencies. Thick composite films were prepared from a ferrite-polymer mix, and all the above properties were studied for these films. We observed that these thick films have lower values of dielectric and magnetic parameters both at low and microwave frequencies. We measured microwave-absorbing properties for the ferrite-polymer sample (ferrite to polymer ratio 70/30) which showed a maximum reflection loss of -37.5 dB at 11.5 GHz for the 3.5-mm-thick sample
Keywords :
barium alloys; cobalt alloys; coercive force; composite materials; ferrites; magnetic annealing; magnetic permeability; magnetic thin films; permittivity; thick films; 1 to 1000000 Hz; 11.5 GHz; 1200 C; 3.5 mm; Co2U-Ba4Co2Fe36O 60; M-type barium hexaferrites; M-type hexaferrites; annealing temperature; citrate method; complex permeability; complex permittivity; composite thick films; dielectric constant; dielectric properties; ferrite-polymer mix; ferrite-polymer sample; hexaferrite bulk thick films; magnetic properties; maximum reflection loss; microwave properties; microwave-absorbing properties; phase formation; saturation magnetization; Barium; Dielectric measurements; Iron; Microwave frequencies; Microwave measurements; Permeability; Permittivity measurement; Saturation magnetization; Tellurium; Thick films; Cavity perturbation technique; Co; citrate precursor method; complex permittivity and permeability; microwave absorbers;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2006.882378
Filename :
1715670
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