Title :
Investigation of Magnetic Properties of Sr-Doped Ba3–xSrxCo2Fe24O41 Z-type Hexaferrite by Mössbauer Spectroscopy
Author :
Jung Tae Lim ; Taejoon Kouh ; Chul Sung Kim
Author_Institution :
Dept. of Phys., Kookmin Univ., Seoul, South Korea
Abstract :
The polycrystalline Ba3-xSrxCo2Fe24O41 (x = 0.0, 0.5, 1.0, and 1.5) samples were synthesized by the solid-state reaction method. The crystalline structure of the samples was found to be a hexagonal structure with a space group of P63/mmc. The lattice constants a0, c0, and Vu of the samples decrease with increasing Sr concentration. From the field-dependent hysteresis curves under 10 kOe at 295 K, the values of Ms increase while the values of Hc decrease. The zero-field-cooled magnetization curves under 100 Oe between 4.2 and 300 K show the spin transition, and the value of Ts decreases from 230 K for x = 0.0 to 135 K for x = 1.5 with increasing Sr concentration due to the reduction of planar anisotropy with the difference in ionic radius between Ba2+ and Sr2+ ions. From the isomer shift value (δ) obtained from Mössbauer spectra, the charge states of all samples are determined to be Fe3+ high spin state. With increasing Sr concentration, the reduction of hyperfine field (Hhf) suggests the change in hyperfine interaction between Fe ions because of the larger ionic radius of Ba2+ ion than that of Sr2+ ion, leading to decreasing Ms.
Keywords :
Mossbauer effect; barium compounds; cobalt compounds; crystal growth; crystal structure; ferrites; hyperfine interactions; isomer shift; lattice constants; magnetic anisotropy; magnetic transitions; magnetisation; space groups; strontium compounds; Ba3-xSrxCo2Fe24O41; Mossbauer spectroscopy; P63/mmc space group; Sr-doped Z-type hexaferrites; charge states; crystalline structure; field-dependent hysteresis curve; hexagonal structure; hyperfine field reduction; hyperfine interaction; ionic radius; isomer shift value; lattice constants; magnetic properties; planar anisotropy; polycrystalline sample synthesis; solid-state reaction method; spin transition; temperature 4.2 K to 300 K; zero-field-cooled magnetization curve; Anisotropic magnetoresistance; Ions; Iron; Magnetic hysteresis; Magnetic properties; Magnetization; Ba3-xSrxCo2Fe24O41; Ba3???xSrxCo2Fe24O41; M??ssbauer spectroscopy; Mossbauer spectroscopy; Z-type hexaferrite;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2446538