稀土元素铈(Ce+3)在六铁体钡(BaCexFe12-xO19)纳米颗粒中的掺杂效应和微观结构行为

Z. A. Gilani, A. Ahmed, H. U. H. K. Khan Asghar, Muhammad Khalid
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引用次数: 3

摘要

采用溶胶-凝胶法制备了铈取代BaM六铁体BaCexFe12-xO19 (x = 0.0, 0.25, 0.5, 0.75, 1.0)纳米晶。采用Rietveld细化方法对其x射线衍射(XRD)谱图进行了分析,证实了其六边形结构的形成。采用Debye Scherrer法、W-H法和SSP法计算晶体尺寸。晶格常数?减小,这是由于八面体位置用半径较小的Fe3+离子取代了大半径的Ce3+离子,而晶格常数c发现增加。x射线密度随Ce3+浓度的增加而增加。傅里叶变换红外光谱(FTIR)在400-620 cm-1范围内确定了n1四面体位点和n2八面体位点两个频段。根据Maxwell Wagner模型,采用阻抗分析仪研究了1 MHz ~ 3 GHz范围内的介电特性。介电常数随频率的增加呈下降趋势,而介电损耗随频率的增加呈色散现象,正切损耗随频率的增加呈色散现象,这是由于Koop的现象学理论。交流电导率在低频表现为平面特性,在高频表现为色散特性。这种行为是由高频晶粒效应引起的。阻抗在高频下表现出连续的作用,这是由于空间电荷的释放。实模量和虚模量随频率的增加而变化,这是由于弛豫现象的发生。根据电介质研究,这些铁氧体可用于高频器件、微波技术和半导体器件。
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Doping Effect and Microstructure Behavior of Rare-Earth Element Cerium (Ce+3) in Barium Hexaferrite (BaCexFe12-xO19) Nanoparticles
Cerium substituted BaM hexaferrites BaCexFe12-xO19 (x = 0.0, 0.25, 0.5, 0.75, and 1.0) nano crystallites were synthesized via Sol-gel method. The x-ray diffraction (XRD) patterns were analyzed by Rietveld refinement which confirms the formation of hexagonal structure. The crystalline size was calculated by Debye Scherrer method, W–H method and SSP method. The lattice constant ? found to decrease, this was due to the octahedral site replacing a large radius of Ce3+ ion with a smaller radius Fe3+ ion, While the lattice constant c found increase. The x-ray density observed increases with increasing Ce3+ concentration. Fourier transform infrared spectroscopy (FTIR) confirmed the two frequency bands n1 tetrahedral site and n2 octahedral site in a range between 400–620 cm-1. Impedance analyzer was used to investigate the dielectric properties in a range of 1 MHz – 3 GHz following Maxwell Wagner model. Dielectric constant showed decreasing trend while dielectric loss showed dispersive behavior by increasing frequency and same was that with tangent loss, such behavior was due to Koop's phenomenological theory. AC conductivity exhibits a plane behavior in a low frequency, while dispersive in high frequency. Such behavior was due to grain effect at high frequency. Impedance showed continuous action at high frequency, which is attributed to the release of space charges. The real and imaginary modulus showed variation by increasing frequency, which was due to the occurrence of relaxation phenomenon. As per dielectric research, these ferrites can be utilized in high frequency devices, microwave technologies, and semiconductor devices.
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