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Structural, dielectric and low temperature magnetic response of Zn doped cobalt ferrite nanoparticles

机译:锌掺杂钴铁氧体纳米粒子的结构,介电和低温磁响应

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The finely controlled nanostructured cubic spinel ferrites pave the way to synthesize nanomaterials with specific properties for particular applications. In this paper, we report sol-gel synthesis of Zn doped spinel Cosub1-x/subZnsubx/subFesub2/subOsub4/sub (where x= 0.0, 0.1, 0.2, and 0.3) ferrite nanoparticles. X-ray diffraction confirms the single phase cubic structure of nano ferrites with average particle size estimated between 55.38 to 32.87 nm and validated by Transmission electron microscopy (TEM) results (±1). The lattice parameter was found to increase with increasing Zn doping concentration. The samples exhibit normal dielectric behaviour of Maxwell-Wagner type of interfacial polarization that decreases with increasing frequency of the applied field. Temperature-dependent magnetic properties were investigated with the aid of physical property system. The hysteresis measurements of the samples show clearly enhancement in magnetic parameters as the temperature goes down to 20 K. Tuning of magnetic properties has been witnessed as a function of doping and temperature under the influence of externally applied magnetic field, has been discussed in this paper.
机译:精细控制的纳米结构立方尖晶石铁氧体为合成具有特定应用特定性能的纳米材料铺平了道路。本文报道了溶胶-凝胶法合成Zn掺杂的尖晶石Co 1-x Zn x Fe 2 O 4 (其中x = 0.0、0.1、0.2和0.3)铁氧体纳米粒子。 X射线衍射证实了纳米铁氧体的单相立方结构,其平均粒径估计在55.38至32.87 nm之间,并通过透射电子显微镜(TEM)结果进行了验证(±1)。发现晶格参数随着Zn掺杂浓度的增加而增加。样品表现出Maxwell-Wagner类型界面极化的正常介电行为,该行为随施加电场频率的增加而降低。借助物理性能系统研究了随温度变化的磁性能。样品的磁滞测量结果表明,温度下降至20 K时,磁参数明显增强。在外部施加的磁场的影响下,磁性能的调整是掺杂和温度的函数,本文对此进行了讨论。 。

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