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Structure and magnetic properties of granular NiZn-ferrite - SiO2

机译:颗粒状NiZn铁氧体-SiO2的结构和磁性

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摘要

Granular systems composed by nanostructured magnetic materials embedded in a non-magnetic matrix present unique physical properties that depend crucially on their nanostructure. In this work, we have studied the structural and magnetic properties of NiZn-ferrite nanoparticles embedded in SiO2, a granular system synthesized by sol-gel processing. Samples with ferrite volumetric fraction x ranging from 6% to 78% were prepared, and characterized by X-ray diffraction, Mössbauer spectroscopy and vibrating sample magnetometry. Our results show the formation of pure stoichiometric NiZn-ferrite in the SiO2 matrix for x < 34%. Above these fraction, our samples presented also small amounts of Fe2O3. Mössbauer spectroscopy revealed the superparamagnetic behaviour of the ferrimagnetic NiZn-ferrite nanoparticles. The combination of different ferrite concentration and heat treatments allowed the obtaintion of samples with saturation magnetization between 1.3 and 68 emu/g and coercivity ranging from 0 to 123 Oe, value which is two orders of magnitude higher than the coercivity of bulk NiZn-ferrite.
机译:由嵌入非磁性基质中的纳米结构磁性材料组成的颗粒系统具有独特的物理特性,而这些特性主要取决于其纳米结构。在这项工作中,我们研究了嵌入SiO2中的NiZn铁氧体纳米颗粒的结构和磁性,SiO2是通过溶胶-凝胶法合成的颗粒体系。制备了铁素体体积分数x为6%至78%的样品,并通过X射线衍射,穆斯堡尔光谱法和振动样品磁力分析对其进行了表征。我们的结果表明,当x <34%时,在SiO2基质中会形成纯化学计量的NiZn铁氧体。高于这些分数,我们的样品中还含有少量的Fe2O3。 Mössbauer光谱揭示了亚铁磁性NiZn铁氧体纳米粒子的超顺磁性行为。不同铁氧体浓度和热处理的结合使得可以得到饱和磁化强度在1.3和68 emu / g之间,矫顽力在0到123 Oe之间的样品,该值比块状NiZn铁氧体的矫顽力高两个数量级。

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