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Magnetocrystalline and Surface Anisotropy in CoFe2O4 Nanoparticles

机译:Cofe2O4纳米粒子中的磁镀和表面各向异性

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摘要

The effect of the annealing temperature on the magnetic properties of cobalt ferrite nanoparticles embedded in an amorphous silica matrix (CoFe O /SiO ), synthesized by a sol-gel auto-combustion method, was investigated by magnetization and AC susceptibility measurements. For samples with 15% w/w nanoparticle concentration, the particle size increases from ~2.5 to ~7 nm, increasing from 700 to 900 °C. The effective magnetic anisotropy constant ( ) increases with decreasing , due to the increase in the surface contribution. For a 5% w/w sample annealed at 900 °C, is much larger (1.7 × 10 J/m ) than that of the 15% w/w sample (7.5 × 10 J/m ) annealed at 700 °C and showing comparable particle size. This indicates that the effect of the annealing temperature on the anisotropy is not only the control of the particle size but also on the core structure (i.e., cation distribution between the two spinel sublattices and degree of spin canting), strongly affecting the magnetocrystalline anisotropy. The results provide evidence that the magnetic anisotropy comes from a complex balance between core and surface contributions that can be controlled by thermal treatments.
机译:通过磁化和AC敏感度测量研究了通过溶胶 - 凝胶自燃法合成的非晶二氧化硅基质(CoFe O / SiO)中嵌入的钴铁氧体纳米粒子磁性的影响。对于具有15%w / w纳米粒子浓度的样品,粒度从〜2.5〜7nm增加,从700℃增加到900℃。由于表面贡献的增加,有效磁各向异性常数()随着降低而增加。对于在900℃下退火的5%w / w样品,比在700°C和显示出来的15%w / w样品(7.5×10 j / m)和显示可比的粒径。这表明退火温度对各向异性的影响不仅是粒径的控制,而且对芯结构的控制(即,两个尖晶石子发作的阳离子分布和旋转荷的程度),强烈影响磁镀晶各向异性。结果提供了证据表明磁各向异性来自可以通过热处理控制的核心和表面贡献之间的复杂平衡。

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