Comparison of structural, optical, electrical and magnetic properties between Ni0.5Co0.5Gd0.005Tb0.005Fe1.99O4 and Ni0.5Co0.5Gd0.0033Tb0.0033Dy0.0033Fe1.99O4

材料科学 微观结构 拉曼光谱 铁磁性 兴奋剂 尖晶石 居里温度 傅里叶变换红外光谱 磁致伸缩 分析化学(期刊) 杂质 光谱学 铁氧体(磁铁) 离子 复合材料 凝聚态物理 磁场 化学工程 冶金 光学 化学 光电子学 工程类 物理 有机化学 量子力学 色谱法
作者
P. Sowjanya,G. Thirupathi,M. Sharath Kumar,T. Ramesh,M.V. Ramana Reddy,Arout Chelvane,Nishant Kumar
出处
期刊:Journal of Alloys and Compounds [Elsevier BV]
卷期号:971: 172623-172623 被引量:1
标识
DOI:10.1016/j.jallcom.2023.172623
摘要

In this work, rare-earth (RE) ions, specifically Gd, Tb, and Dy, were simultaneously doped into a nickel cobalt ferrite (Ni0.5Co0.5Fe2O4) matrix to compare the enhancement of its electrical, magnetic, and optical properties depending on the number of distinct RE-ions in the matrixTwo compositions having distinct number of RE-ions that is NCR1 (Gd0.005 and Tb0.005) and NCR2 (Gd0.0033, Tb0.0033, and Dy0.0033) at Fe-site of the matrix, were prepared using the sol-gel technique. Both compositions exhibited the spinel phase according to the studies X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), and Raman spectroscopy. Microstructure observed from micrographs revealed that NCR2 had a relatively porous structure and larger grain size compared to NCR1. This suggests that the different doping compositions can influence the microstructure of the material, which can impact its properties. An increase in the Curie temperature (the temperature at which a material loses its ferromagnetic properties) was noted for NCR2, indicating improved magnetic behavior. An improvement in magnetostriction behavior for NCR2 implies that it can be used in applications where precise control of shape or mechanical properties in a magnetic field is required. The enhanced properties in NCR2 were attributed to the multicity of impurity doping (Gd, Tb, Dy), which led to structural changes within the material.

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