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Dielectric conductivity and ferroelectric properties of lead-free electronic ceramic:0.6Bi(Fe0.98Ga0.02)O3-0.4BaTiO3

机译:无铅电子陶瓷的介电电导和铁电性能:0.6Bi(Fe0.98Ga0.02)O3-0.4BaTiO3

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摘要

This paper presents the fabrication of a polycrystalline sample of the above electronic system by a mixed-oxide technique. The X-ray diffraction pattern show the evolution of perovskite phase (including some impurity phase). The rhombohedral symmetry and crystallite size of 42 nm were also found from the XRD. The distribution of grains in the microstructure suggests the formation of high density ceramics. The role of grains, grain boundaries and interface on resistive (impedance, electrical modulus and electrical transport) and insulating (dielectric) has been investigated over a wide range of frequencies (103–106 Hz) and temperatures (25–400 °C) using spectroscopy (dielectric, modulus and impedance) techniques. The Nyquist plot illustrates the presence of effects such as grain and grain boundary over selected temperatures. Analysis of conductivity spectra reveals that the electrical transport process of the material is influenced by charge transfer by hopping. The complex modulus spectrum also describes the dielectric relaxation of the material. The study of field dependent polarization reveals the existence of ferroelectricity in the material.
机译:本文介绍了通过混合氧化物技术制备上述电子系统的多晶样品。 X射线衍射图表明钙钛矿相(包括一些杂质相)的演变。 X射线衍射也发现了菱形的对称性和42纳米的晶粒尺寸。晶粒在微观结构中的分布表明高密度陶瓷的形成。已经在很宽的频率范围(10 3 –10 6)上研究了晶粒,晶界和界面对电阻(阻抗,电模量和电传输)和绝缘(电介质)的作用 Hz)和温度(25–400°C),使用光谱技术(介电,模量和阻抗)。奈奎斯特图说明了在选定温度下是否存在诸如晶粒和晶界的影响。电导率谱分析表明,材料的电传输过程受跳跃电荷转移的影响。复数模量谱还描述了材料的介电弛豫。对场相关极化的研究揭示了材料中铁电的存在。

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