MICROEMULSION-BASED METHOD OF SYNTHESIS OF ZINC-NICKEL FERRITE AND THEIR MAGNETIC PROPERTIES

T. Plutenko, O. V’yunov, O. Fedorchuk, S. Solopan, M. Plutenko, B. Khomenko
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Abstract

Solid solutions of nickel-zinc ferrites ZnxNi1-xFe2O4 were synthesized by two different methods: synthesis in microemulsions and by stepwise precipitation. The properties of the resulted nano-sized particles synthesized by two different methods were compared. It was found that the increase in zinc content leads to an increase in the lattice parameters. During the synthesis by the method of microemulsions, the temperature of a single-phase product formation is 400 °C, while by the method of precipitation, a single-phase product formation begins at 600 °C. It was shown that the materials synthesized by both methods have similar unit cell parameters. The average size of ferrite nanoparticles synthesized in microemulsions is smaller, lattice strain is higher compared to ferrites synthesized by stepwise precipitation. Also, lower treatment temperatures provide higher stoichiometry, and homogeneity of materials while magnetization difference is negligible. The particles of the obtained powders have high saturation magnetization Ms = 45.6 Am2/kg for synthesis from microemulsions and Ms = 44.8 Am2/kg for co-precipitated samples, the low coercive force Hc = 1.3 kA/m and Hc = 3 kA/m, respectively. Changes made make synthesized particles more applicable in film deposition, and manufacturing of high-quality magnetic coatings.
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微乳化法制备锌镍铁氧体及其磁性能
采用微乳法和分步沉淀法合成了镍锌铁氧体ZnxNi1-xFe2O4的固溶体。比较了两种方法合成的纳米颗粒的性能。结果表明,锌含量的增加导致晶格参数的增加。在微乳法合成过程中,单相产物的形成温度为400℃,而沉淀法合成过程中,单相产物的形成始于600℃。结果表明,两种方法合成的材料具有相似的单胞参数。微乳法制备的纳米铁氧体平均尺寸比分步沉淀法制备的小,晶格应变高。此外,较低的处理温度提供较高的化学计量,材料的均匀性,而磁化差异可以忽略不计。所得粉体颗粒具有较高的饱和磁化强度,微乳合成的磁化强度Ms = 45.6 Am2/kg,共沉淀法的磁化强度Ms = 44.8 Am2/kg,矫顽力Hc = 1.3 kA/m,共沉淀法的磁化强度Hc = 3 kA/m。所做的改变使合成的颗粒更适用于薄膜沉积和制造高质量的磁性涂层。
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