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Ferroelectric Characterization and AC-Conductivity Properties of Bi_(4-x)Pr_xTi_3O_(12) Polycrystals

机译:Bi_(4-x)Pr_xTi_3O_(12)多晶的铁电表征和交流电导性

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摘要

Effects of Praseodymium doping on the ferroelectric properties of Bi_4Ti_3O_(12) using dense ceramics were systematically investigated from room temperature to 730°C. DRX studies show that Aurivillius structure can accept low amounts of praseodymium without the precipitation of second phases. Thermoelectric analysis and ferroelectric hysteresis measurements were performed and show that the incorporation of praseodymium modified the transition temperature (Tc) and slightly the polarization values. The incorporation of praseodymium resulted in a variation in the permittivity and in the remnant polarization. The polarization characteristics of the doped samples were different to those of Bi_4Ti_3O_(12). AC-conductivity was calculated for each sample and different conduction mechanisms are identified using the typical Arrhenius law.
机译:系统地研究了of掺杂对使用致密陶瓷的Bi_4Ti_3O_(12)的铁电性能的影响,从室温到730°C。 DRX研究表明Aurivillius结构可以接受少量的ase,而不会沉淀第二相。进行了热电分析和铁电磁滞测量,结果表明掺入modified改变了转变温度(Tc),并稍微改变了极化值。掺入resulted导致介电常数和剩余极化的变化。掺杂样品的极化特性不同于Bi_4Ti_3O_(12)。计算每个样品的交流电导率,并使用典型的阿伦尼乌斯定律确定不同的导电机理。

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