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首页> 外文期刊>Ferroelectrics: Letters Section >Investigation of Electrical, Dielectric and Electromechanical Properties of Lanthanum Modified Lead Zirconate Titanate Using Impedance Spectroscopy Technique
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Investigation of Electrical, Dielectric and Electromechanical Properties of Lanthanum Modified Lead Zirconate Titanate Using Impedance Spectroscopy Technique

机译:阻抗谱技术研究镧修饰的钛酸锆钛酸铅的电,介电和机电性能

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摘要

Complex impedance spectmscopy (CIS) analysis on polycrystalline lanthanum modified lead zirconate titanate (PLZT) has been carried out to investigate its electrical, dielectric and electromechanical properties. CIS has been shown to be an important and very convenient experimental tool to correlate the electrical and dielectric behaviour of ferroelectric ceamics with their microstructure/structure in terms of the relaxations of defect species. The physical structure of the sample pellet has been visualized as comprising of grains separated by grain boundary in accordance with the impedance spectrum observations. The electrical processes in the sample has been modeled in the form of an electrical equivalent circuit made up of a series combination of two parallel RC circuits attributed to grains and grain boundaries. The real and imaginary parts of dielectric constants have been evaluated from impedance spectrum results and expressed in terms of complex permittivity spectrum (Cole-Cole plot). The dielectric phenomenon in PLZT has been observed to be of polydispersive nature with marked deviation from Debye type relaxation process. This result has also been confirmed by complex modulus analysis. Conductivity dispersion has been observed throughout the frequency range in the present investigation up to 400 deg C beyond which low frequency dispersion and high frequency plateau was found. It has been attributed to Warburg type diffusion phenomenon arising due to ion migration/charge transport at higher temperature.
机译:已经对多晶镧改性的锆钛酸铅钛酸酯(PLZT)进行了复数阻抗谱(CIS)分析,以研究其电,介电和机电性能。 CIS已被证明是一种重要且非常方便的实验工具,可以根据缺陷种类的松弛程度将铁电陶瓷的电学和介电性能与其微结构/结构相关联。根据阻抗谱的观察,样品颗粒的物理结构已被可视化为由被晶界分隔的晶粒组成。样品中的电气过程以等效电路的形式建模,该等效电路由两个并联的RC电路(由晶粒和晶界引起)的串联组合组成。介电常数的实部和虚部已经从阻抗谱结果中进行了评估,并以复介电常数谱表示(Cole-Cole图)。已经观察到PLZT中的介电现象具有多分散性,与Debye型弛豫过程有明显的偏差。复模量分析也证实了这一结果。在本研究中,在整个频率范围(最高至400摄氏度)中都观察到了电导率色散,超过此范围则发现了低频色散和高频平稳。这归因于由于高温下的离子迁移/电荷迁移而引起的Warburg型扩散现象。

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