Effect of Zr, Sm and Gd Doped CoFe2O4 on Structural, Spectral and Magnetic Properties

P. N, Siddeshwar M, Naveen P, Srinivas K, Nehru Boda, Kanchana Latha Chittury
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Abstract

In this work, the context is doped Rare earth elements on the structural, optical and magnetic properties of the cobalt ferrite nanoparticles using sol-gel synthesis by calcinating at 500oC for 4 hours in air. Rietveld assessment of XRD data validated the formation of a single phase cubic spinal configuration for all formations coupled with magnetic properties and were investigated. SEM has been used to study the surface morphology of the compounds. FTIR and Raman spectra confirmed the structure with the appearance of standard modes. The Rare Earth replacement in CoFe2O4 ferrites has intense impact on magnetic properties. Hysteresis loops showed the saturation magnetisation values were increased/decreased from 55emu/gm to 25 emu/gm by inserting the Rare Earth (RE) material in the Rare Earth CoFe2O4 ferrite samples. Magnetic hysteresis data show that the coercive force is depleted with change in Zr, Sm Gd composition but the net magnetisation of the samples are not interrelated with dopant level.
掺杂 Zr、Sm 和 Gd 的 CoFe2O4 对结构、光谱和磁性能的影响
本研究采用溶胶-凝胶合成法,在 500 摄氏度空气中煅烧 4 小时,研究了掺杂稀土元素对钴铁氧体纳米粒子的结构、光学和磁学特性的影响。对 XRD 数据进行的里特维尔德评估验证了所有形成的单相立方脊柱构型,并对其磁性能进行了研究。扫描电镜用于研究化合物的表面形态。傅立叶变换红外光谱和拉曼光谱证实了出现标准模式的结构。CoFe2O4 铁氧体中的稀土置换对磁性能有很大影响。磁滞回线显示,在稀土 CoFe2O4 铁氧体样品中加入稀土(RE)材料后,饱和磁化值从 55emu/gm 增加/减少到 25emu/gm。磁滞数据显示,矫顽力随着锆、钐、钆成分的变化而减弱,但样品的净磁化与掺杂水平无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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