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首页> 外文期刊>Journal of magnetism and magnetic materials >Temperature dependent and applied field strength dependent magnetic study of cobalt nickel ferrite nano particles: Synthesized by an environmentally benign method
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Temperature dependent and applied field strength dependent magnetic study of cobalt nickel ferrite nano particles: Synthesized by an environmentally benign method

机译:钴镍铁氧体纳米颗粒的温度依赖性和应用磁场强度依赖性磁性研究:通过环境友好的方法合成

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Spinel ferrites have come a long way in their versatile applications. The ever growing applications of these materials demand detailed study of material properties and environmental considerations in their synthesis. In this article, we report the effect of temperature and applied magnetic field strength on the magnetic behavior of the cobalt nickel ferrite nano powder samples. Basic structural properties of spinel ferrite nano particles, that are synthesized by an environmentally benign method of auto combustion, are characterized through XRD, TEM, RAMAN spectroscopy. Diffuse Reflectance Spectroscopy (DRS) is done to understand the nickel substitution effect on the optical properties of cobalt ferrite nano particles. Thermo magnetic studies using SQUID in the temperature range 5 K to 400 K and room temperature (300 K) VSM studies are performed on these samples. Fields of 0Oe (no applied field: ZF), 1 kOe (for ZFC and FC curves), 5 kOe (0.5 T), 50 kOe (5T) (for M-H loop study) are used to study the magnetic behavior of these nano particles. The XRD, TEM analysis suggest 40 nm crystallites that show changes in the cation distribution and phase changes in the spinel structure with nickel substitution. Raman micrographs support phase purity changes and cation redistributions with nickel substitution. Diffuse reflectance study on powder samples suggests two band gap values for nickel rich compounds. The Magnetic study of these sample nano particles show varied magnetic properties from that of hard magnetic, positive multi axial anisotropy and single-magnetic-domain structures at 5 K temperature to soft magnetic core shell like structures at 300 K temperature. Nickel substitution effect is non monotonous. Blocking temperature of all the samples is found to be higher than the values suggested in the literature. (C) 2018 Elsevier B.V. All rights reserved.
机译:尖晶石铁氧体在其多功能应用中已经走了很长一段路。这些材料的不断增长的应用要求对其合成过程中的材料特性和环境因素进行详细研究。在本文中,我们报告了温度和施加的磁场强度对钴镍铁氧体纳米粉末样品磁性能的影响。通过XRD,TEM,RAMAN光谱对通过环境友好的自动燃烧方法合成的尖晶石铁氧体纳米颗粒的基本结构性质进行了表征。进行了漫反射光谱(DRS)以了解镍替代对钴铁氧体纳米颗粒光学特性的影响。使用SQUID在5 K至400 K的温度范围内进行热磁研究,并在室温(300 K)下对这些样品进行VSM研究。使用0Oe(未施加磁场:ZF),1 kOe(用于ZFC和FC曲线),5 kOe(0.5 T),50 kOe(5T)(用于MH回路研究)的磁场来研究这些纳米粒子的磁行为。 XRD,TEM分析表明有40 nm的微晶,显示有镍取代的尖晶石结构中阳离子分布的变化和相变。拉曼显微照片支持相纯度的变化和阳离子取代镍的重新分布。对粉末样品的漫反射研究表明,富镍化合物的两个带隙值。这些样品纳米粒子的磁学研究表明,其磁性能从5 K温度下的硬磁,正多轴各向异性和单磁畴结构到300 K温度下的软磁核壳类似的磁性能不同。镍替代效应不是单调的。发现所有样品的粘连温度都高于文献中建议的值。 (C)2018 Elsevier B.V.保留所有权利。

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