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首页> 外文期刊>CERAMICS INTERNATIONAL >Physical, structural, morphological, magnetic and electrical properties of Co0.5-xNixZn0.5Fe2O4 nanocrystalline ferrites
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Physical, structural, morphological, magnetic and electrical properties of Co0.5-xNixZn0.5Fe2O4 nanocrystalline ferrites

机译:CO0.5-XNIXZN0.5FE2O4纳米晶铁氧体的物理,结构,形态,磁性和电性能

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摘要

A series of Co0.5-xNixZn0.5Fe2O4 (x = 0-0.25 insteps of 0.05) nano crystalline ferrites were synthesized in combustion method using citric acid as fuel. Densities and porosities were calculated using the lattice constant and Archimedes's principle. A linear increase in experimental density and a decrease in porosity were observed with increase in nickel concentration. Cationic distribution was proposed on the basis of theoretical lattice constant and it was correlated with the variation in magnetic and electrical properties of all samples. TEM image of the sample with nickel concentration x = 0.15 indicated the existence of nano-metric range particles and the sample was characterized with the help of inter-planar spacing(s) from SAED pattern. Morphological and surface analysis was studies using Scanning Electron Microscopy and well developed nearly spherical grains were observed with increase in nickel concentration. Energy Dispersive Spectroscopic (EDS) analysis was performed for all nickel substituted samples and all displayed stoichiometric proportions of ions in the samples as per the chemical composition. Elemental mapping was done for all samples using EDS data. Curie temperature was dropped nearly 90 degrees C at the end of the series. Initial permeability showed slight variation with an increase in nickel concentration and it remained nearly constant with frequency up to 3 MHz. Magnetic loss was observed to be constant for all samples after 100 kHz. DC Electrical resistivities of all samples were measured and all samples displayed resistivity in the order of 10(8) Omega-cm. AC resistivity and dielectric studies were conducted from 100 Hz to 5 MHz for all samples. Dielectric constant and losses of all samples exhibited very low values compared to that of conventional ferrites. The electrical properties of all samples were discussed with the help of temperature variation of resistivity, activation energy, grain size, density and porosity.
机译:使用柠檬酸作为燃料,在燃烧方法中合成了一系列COO.5-XNIXZN0.5FE2O4(x = 0-0.25件0.05)纳米结晶铁氧体。使用晶格常数和阿基米德的原则计算密度和孔隙率。通过增加镍浓度,观察到实验密度的线性增加和孔隙率降低。基于理论晶格常数提出阳离子分布,并与所有样品的磁性和电性能的变化相关。具有镍浓度x = 0.15的样品的TEM图像表明存在纳米度量范围颗粒,并通过从SAED图案的平面间隔的帮助表征样品。使用扫描电子显微镜的形态学和表面分析是使用扫描电子显微镜的研究,并且通过镍浓度增加观察到几乎球形晶粒。根据化学成分,对所有镍取代的样品进行能量分散光谱(EDS)分析,并在样品中显示各种化学计量的离子比例。使用EDS数据为所有样本进行元素映射。居里温度在系列末端滴下近90℃。初始渗透性显示出镍浓度增加的微小变化,并且频率几乎保持恒定,高达3MHz。在100kHz后,观察到磁性损失对所有样品恒定。测量所有样品的直流电电阻,并且所有样品的显示电阻率为10(8)ω-cm。对所有样品的100Hz至5MHz进行交流电阻率和介电研究。与常规铁氧体相比,所有样品的介电常数和损耗表现出非常低的值。借助电阻率,活化能量,粒度,密度和孔隙率的温度变化讨论了所有样品的电气性质。

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