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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Ferroelectric relaxor behaviour and impedance spectroscopy of Bi2O3-doped barium zirconium titanate ceramics
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Ferroelectric relaxor behaviour and impedance spectroscopy of Bi2O3-doped barium zirconium titanate ceramics

机译:Bi2O3掺杂钛酸锆钛酸钡陶瓷的铁电弛豫特性和阻抗谱

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Bi2O3-doped barium zirconate titanate ceramics, Ba1-xBix(Zr0.05Ti0.95)O-3, have been prepared by the conventional solid-state reaction method. The ferroelectric relaxor behaviour and dielectric properties have been investigated in detail. By XRD analysis, it is suggested that up to x = 0.04, Bi3+ substitutes A-site ion, and thereafter with higher Bi3+ content, it enters the B-site sub lattice. Substitution of Bi3+ ions induces ferroelectric relaxor behaviour and the degree of relaxation behaviour increases with bismuth concentration. The remanent polarization and strain behaviour show a slight increase with the substitution level. The degree of hysteresis (strain versus electric field) also reduces from 21.4% to 4.6% with bismuth substitution. Impedance measurements were made on the prepared sample over a wide range of temperatures (300-723 K) and frequencies (40 Hz-1 MHz), which show the presence of both bulk and grain boundary effects in the material. The bulk and grain boundary conductivities determined from impedance study indicate the Arrhenius-type thermally activated process. Impedance spectroscopy is shown to be an efficient method capable of detecting the contributions of the resistances of grains and grain boundaries to the complex impedance of a ceramic system, accurately estimating its electrical conductivity as well as its corresponding activation energies and drawing conclusions on its structural properties.
机译:采用传统的固态反应方法制备了Bi2O3掺杂锆钛酸钡钛酸盐陶瓷Ba1-xBix(Zr0.05Ti0.95)O-3。已经详细研究了铁电弛豫器的性能和介电性能。 X射线衍射分析表明,最多x = 0.04,Bi3 +替代了A位离子,此后Bi3 +含量较高,它进入了B位亚晶格。 Bi 3+离子的取代引起铁电弛豫行为,并且弛豫行为的程度随铋浓度的增加而增加。剩余极化和应变行为随取代水平的增加而略有增加。铋取代后的磁滞程度(应变对电场)也从21.4%降低到4.6%。在很宽的温度(300-723 K)和频率(40 Hz-1 MHz)范围内对制得的样品进行阻抗测量,这表明材料中同时存在体积和晶界效应。通过阻抗研究确定的体积和晶界电导率表明了Arrhenius型热活化过程。阻抗谱被证明是一种有效的方法,能够检测晶粒和晶界电阻对陶瓷系统复阻抗的贡献,准确估算其电导率及其相应的活化能,并就其结构性质得出结论。

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