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Dielectric relaxation and pinning phenomenon of (SrPb)TiO3 ceramics for dielectric tunable device application

机译:(SrPb)TiO3陶瓷在介电可调器件中的介电弛豫和钉扎现象

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摘要

The behavior of ferroelectric domain under applied electric field is very sensitive to point defects, which can lead to high temperature dielectric relaxation behaviors. In this work, the phases, dielectric properties and ferroelectric switching behavior of strontium lead titanate ceramics were investigated. The structural characterization is confirmed by X-ray diffraction. The high dielectric tunability and high figure of merit of ceramics, especially Sr0.7Pb0.3TiO3 (SPT), imply that SPT ceramics are promising materials for tunable capacitor applications. Oxygen vacancies induced dielectric relaxation phenomenon is observed. Pinched shape hysteresis loops appeared in low temperature, low electric field or high frequency, whereas these pinched hysteresis loops also can become normal by rising temperature, enhancing electric field or lowering frequency. The pinning and depinning effect can be ascribed to the interaction between oxygen vacancies and domain switching. A qualitative model and a quantitative model are used to explain this phenomenon. Besides, polarization and oxygen treated experiment can exert an enormous influence on pinning effect and the machanisms are also discussed in this work.
机译:外加电场下铁电畴的行为对点缺陷非常敏感,这会导致高温介电弛豫行为。在这项工作中,研究了钛酸锶铅陶瓷的相,介电性能和铁电转换行为。结构表征通过X射线衍射证实。陶瓷,尤其是Sr0.7Pb0.3TiO3(SPT)的高介电可调性和高品质因数,意味着SPT陶瓷是可调谐电容器应用中有希望的材料。观察到氧空位引起的介电弛豫现象。收缩形磁滞回线出现在低温,低电场或高频率下,而这些收缩磁滞回线也可以通过温度升高,电场增强或频率降低而变得正常。钉扎和去钉扎作用可以归因于氧空位与畴切换之间的相互作用。定性模型和定量模型用于解释这种现象。此外,极化和氧处理实验可以对钉扎效果产生巨大影响,并且还讨论了其机理。

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