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BaBiTiZrNbO陶瓷的扩散相变与弛豫铁电行为研究

Study of diffuse phase transition and relaxor ferroelectric behavior of BaBiTiZrNbO ceramic.

作者信息

Raddaoui Z, El Kossi S, Dhahri J, Abdelmoula N, Taibi K

机构信息

Laboratoire de la Matière Condensée et des Nanosciences, Université de Monastir, Faculté des Sciences de Monastir Avenue de l'environnement 5019 Monastir Tunisia

Laboratoire des Matériaux Ferroélectriques, LR-Physique-Mathématiques et Applications, Université de Sfax, Faculté des Sciences Route de Soukra km 3.5 B.P 1171 3000 Sfax Tunisia.

出版信息

RSC Adv. 2019 Jan 18;9(5):2412-2425. doi: 10.1039/c8ra08910h.

Abstract

In the present work, structural and dielectrics properties of polycrystalline sample BaBiTiZrNbO (BBTZN) prepared by a molten-salt method were investigated. X-ray diffraction analyses revealed the formation of a single-phase pseudocubic structure with a 3̄ space group. Unlike the trend observed in classic ferroelectrics, the temperature dependence of the dielectric constants showed the presence of three sequences of structural phase transitions. In fact, the local disorder provides a frequency dependent relaxor like behaviours attributed to the dynamic of polar nanoregions (PNRs). The diffuse phase transition (DPT) analyzed using the modified Curie-Weiss law and Lorenz formula confirms the presence of short-range association between the nanopolar domains. The obtained values of the degree of diffuseness are found to be in the range of 1.58-1.78 due to the existence of different states of polarization and, hence, different relaxation times in different regions. The frequency dependence of temperature at dielectric maxima, which is governed by the production of PNRs at a high temperature, satisfies the Vogel-Fulcher (V-F) law. The temperature dependence of the electric modulus for various frequencies indicating a thermally activated relaxation ascribed to the Maxwell-Wagner (M-W) space charge relaxation phenomenon.

摘要

在本工作中,对采用熔盐法制备的多晶样品BaBiTiZrNbO(BBTZN)的结构和介电性能进行了研究。X射线衍射分析表明形成了具有3̄空间群的单相伪立方结构。与经典铁电体中观察到的趋势不同,介电常数的温度依赖性显示出存在三个结构相变序列。实际上,局部无序提供了一种频率依赖的弛豫行为,这归因于极性纳米区域(PNRs)的动力学。使用修正的居里 - 外斯定律和洛伦兹公式分析的漫散相变(DPT)证实了纳米极性域之间存在短程关联。由于存在不同的极化状态,因此在不同区域存在不同的弛豫时间,所获得的漫散度值在1.58 - 1.78范围内。在高温下由PNRs的产生所控制的介电最大值处温度的频率依赖性符合Vogel - Fulcher(V - F)定律。各种频率下电模量的温度依赖性表明存在归因于麦克斯韦 - 瓦格纳(M - W)空间电荷弛豫现象的热激活弛豫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b8a/9059819/faa1e7254e2f/c8ra08910h-f1.jpg

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