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Structural, electrical, magnetic and dielectric properties of rare-earth substituted cobalt ferrites nanoparticles synthesized by the co-precipitation method

机译:共沉淀法合成稀土取代钴铁氧体纳米粒子的结构,电,磁和介电性能

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摘要

Pure nanoparticles of the rare-earth substituted cobalt ferrites CoRE_xFe_(2-x)O_4 (where RE=Nd, Sm and Gd and x=0.1 and 0.2) were prepared by the chemical co-precipitation method. X-ray diffraction, Transmission electron microscopy (TEM), d.c. electrical conductivity, Magnetic hysteresis and Thermal analysis are utilized in order to study the effect of variation in the rare-earth substitution and its impact on particle size, magnetic properties like M_s, H-c and Curie temperature. The phase identification of the materials by X-ray diffraction reveals the single-phase nature of the materials. The lattice parameter increased with rare-earth content for x≤0.2. The Transmission electron micrographs of Nd-, Sm- and Gd-substituted CoFe_2O_4 exhibit the particle size 36.1 to 67.8 nm ranges. The data of temperature variation of the direct current electrical conductivity showed definite breaks, which corresponds to ferrimagnetic to paramagnetic transitions. The thermoelectric power for all compound are positive over the whole range of temperature. The dielectric constant decreases with frequency and rare-earth content for the prepared samples. The magnetic properties of rare-earth substituted cobalt ferrites showed a definite hysteresis loop at room temperature. The reduction of coercive force, saturation magnetization, ratio M_R/M_S and magnetic moments may be due to dilution of the magnetic interaction.
机译:通过化学共沉淀法制备了稀土取代的钴铁氧体CoRE_xFe_(2-x)O_4(其中RE = Nd,Sm和Gd且x = 0.1和0.2)的纯纳米颗粒。 X射线衍射,透射电子显微镜(TEM),直流电为了研究稀土替代的变化及其对粒径,磁性能(例如M_s,H-c和居里温度)的影响,利用了电导率,磁滞和热分析。通过X射线衍射对材料进行相鉴定,揭示了材料的单相性质。 x≤0.2时,晶格参数随稀土含量增加而增加。 Nd-,Sm-和Gd取代的CoFe_2O_4的透射电子显微照片显示出36.1至67.8 nm的粒径范围。直流电导率的温度变化数据显示出明确的断裂,这对应于亚铁磁到顺磁的转变。所有化合物的热电功率在整个温度范围内为正。所制备样品的介电常数随频率和稀土含量降低。稀土取代的钴铁氧体的磁性在室温下显示出明确的磁滞回线。矫顽力,饱和磁化强度,M_R / M_S之比和磁矩的减小可能是由于磁相互作用的稀释所致。

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