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Enhanced Magnetization of Sol-Gel Synthesized Pb-Doped Strontium Hexaferrites Nanocrystallites at Low Temperature

机译:在低温下增强溶胶 - 凝胶合成的PB掺杂锶六氟镍纳米晶体的磁化强度

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摘要

Effect of Pb doping on the structural and low temperature magnetic properties of SrPbxFe12-xO19 (x=0,0.1,0.2,0.3,and  0.4), synthesized by sol-gel autocombustion technique, has been investigated. The powder samples were sintered at 800°C for 2 h in order to develop the stable hexagonal phase, characteristic of the SrFe12O19 structure. The consequences of Pb substitution (at iron sites) on various structural parameters like lattice constants, unit cell volume, crystallite size, and porosity have been discussed. Fourier transform infrared frequency bands were utilized to determine the formation of tetrahedral and octahedral clusters of M-type ferrites. Hexagonal texture of the grains, a characteristic of the hexagonal crystal structure of SrFe12O19, was refined by Pb substitution. The magnetic properties, determined using a vibrating sample magnetometer, revealed that saturation magnetization decreased, while coercivity was increased with the increase of Pb contents. However, the increased squareness ratio and hence the energy product motivate the utilization of these ferrite compositions where hard magnetic characteristics are required. The increased values of saturation magnetization were observed at reduced temperature of 200 K, attributable to the better spin alignments of individual magnetic moments at low temperature.
机译:研究了PB掺杂对由溶胶 - 凝胶自动变阻技术​​合成的SrPBXFe12-XO19(X = 0.0.1,0.3,和0.4)的结构和低温磁性的影响。将粉末样品在800℃下烧结2小时,以显影稳定的六边形相,SRFE12O19结构的特征。已经讨论了Pb取代(在铁位点)上的各种结构参数,如晶格常数,单位细胞体积,微晶尺寸和孔隙率。傅里叶变换红外频带用于确定M型铁氧体的四面体和八面体簇的形成。通过PB取代改装六方晶体,SRFE12O19的六方晶体结构的特征。使用振动样品仪测定的磁性特性揭示饱和磁化强度随着PB含量的增加而增加而增加。然而,增加的平方率和因此能量产品促进了所需硬磁特性的这些铁氧体组合物的利用。在减少200 k的降低的温度下观察到饱和磁化值的增加,可归因于低温下各个磁矩的更好的旋转比对。

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