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Structural elucidation and dielectric behavior evaluation of Dy-Ni substituted manganese ferrites

机译:Dy-Ni取代锰铁氧体的结构阐明和介电行为评价

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摘要

Dy-Ni substituted Mn1-xNixFe2-yDyyO4 (x = 0.0-0.1 and y = 0.0-0.2) soft magnetic oxides were synthesized using a size controlled micro-emulsion method. X-ray diffraction (XRD) analysis was employed to confirm the spinel structure of synthesized ferrites. Crystallite size was found to decrease (33-22 nm) while lattice constant was increased (8.58-8.63 angstrom) by increasing dopants content. FTIR bands observed in the range 500-600 cm(-1) is the evidence to form the spinel structure of these ferrites. Dielectric constant (epsilon') and dielectric loss (epsilon '') were observed to decrease with the increase of frequency due to hopping mechanism. Hysteresis curves exhibited soft nature of synthesized nanoferrites. Remanence (M-R) and saturation magnetization (M-S) were increased with the incorporation of Dy and Ni ions. The decreased in dielectric losses and increased in magnetic parameters suggested that these ferrites are potential candidates for magnetic recording heads.
机译:采用粒径可控微乳液法合成了Dy-Ni取代的Mn1-xNixFe2-YDyO4(x=0.0-0.1和y=0.0-0.2)软磁氧化物。X射线衍射(XRD)分析证实了合成铁氧体的尖晶石结构。随着掺杂剂含量的增加,晶粒尺寸减小(33-22nm),晶格常数增大(8.58-8.63埃)。在500-600 cm(-1)范围内观察到的FTIR谱带是形成这些铁氧体尖晶石结构的证据。由于跳频机制,介电常数(ε′)和介电损耗(ε′)随着频率的增加而降低。磁滞曲线显示了合成纳米铁氧体的柔软性。随着Dy和Ni离子的加入,剩磁(M-R)和饱和磁化强度(M-S)增加。介电损耗的降低和磁参数的增加表明,这些铁氧体是磁记录头的潜在候选材料。

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