TY - JOUR
T1 - Influences of La3+ substitution on the structure and magnetic properties of M-type strontium ferrites
AU - Liu, Xiansong
AU - Zhong, Wei
AU - Yang, Sen
AU - Yu, Zhi
AU - Gu, Benxi
AU - Du, Youwei
PY - 2002/1
Y1 - 2002/1
N2 - M-type strontium ferrites with substitution of Sr2+ by rare-earth La3+, according to the formula Sr1-xLaxFe12O19, are prepared by the ceramic process. Influences of the substituted amount of La3+ on structure and magnetic properties of Sr1-xLaxFe12O19 compounds have systematically been investigated by XRD, VSM and Mössbauer spectrum. When the substituted amount x is below 0.30, X-ray diffraction shows that the samples are single M-type hexagonal ferrites. It is found that the suitable amount of La3+ substitution may remarkably increase saturation magnetization σs and intrinsic coercivity HcJ. With the La3+ addition for the same sintering temperature, σs and HcJ increase at first, then decrease gradually. However, the substituted amount x at the maximum value of HcJ is bigger than that of σs. Mössbauer spectroscopy of 57Fe in Sr1-xLaxFe12O19 has shown that the substitution of Sr2+ by La3+ is associated with a valence change of Fe3+ to Fe2+ at 2a or 4f2 site. The magnetic properties are reflected in the Mössbauer spectra which indicate that the magnetic hyperfine field (Hhf) is detected with the highest value at x = 0.20. The different exchange paths between the iron sublattices are discussed according to the increased hyperfine fields of the 12k- and 2b-site. The Curie temperature of Sr1-xLaxFe12O19 decreases linearly with increasing La3+ substitution.
AB - M-type strontium ferrites with substitution of Sr2+ by rare-earth La3+, according to the formula Sr1-xLaxFe12O19, are prepared by the ceramic process. Influences of the substituted amount of La3+ on structure and magnetic properties of Sr1-xLaxFe12O19 compounds have systematically been investigated by XRD, VSM and Mössbauer spectrum. When the substituted amount x is below 0.30, X-ray diffraction shows that the samples are single M-type hexagonal ferrites. It is found that the suitable amount of La3+ substitution may remarkably increase saturation magnetization σs and intrinsic coercivity HcJ. With the La3+ addition for the same sintering temperature, σs and HcJ increase at first, then decrease gradually. However, the substituted amount x at the maximum value of HcJ is bigger than that of σs. Mössbauer spectroscopy of 57Fe in Sr1-xLaxFe12O19 has shown that the substitution of Sr2+ by La3+ is associated with a valence change of Fe3+ to Fe2+ at 2a or 4f2 site. The magnetic properties are reflected in the Mössbauer spectra which indicate that the magnetic hyperfine field (Hhf) is detected with the highest value at x = 0.20. The different exchange paths between the iron sublattices are discussed according to the increased hyperfine fields of the 12k- and 2b-site. The Curie temperature of Sr1-xLaxFe12O19 decreases linearly with increasing La3+ substitution.
KW - La substitution
KW - M-type stronitum ferrites
KW - Magnetic properties
KW - Mössbauer spectroscopy
UR - https://www.scopus.com/pages/publications/0036154399
U2 - 10.1016/S0304-8853(01)00914-3
DO - 10.1016/S0304-8853(01)00914-3
M3 - 文章
AN - SCOPUS:0036154399
SN - 0304-8853
VL - 238
SP - 207
EP - 214
JO - Journal of Magnetism and Magnetic Materials
JF - Journal of Magnetism and Magnetic Materials
IS - 2-3
ER -