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BaCaTiZnNbO铁电陶瓷的结构、介电和阻抗谱分析

Structural, dielectric and impedance spectroscopy analysis of BaCaTiZnNbO ferroelectric ceramic.

作者信息

Bendahhou Amine, Chourti Karim, El Bouayadi Rachid, El Barkany Soufian, Abou-Salama Mohamed

机构信息

Department of Chemistry, Laboratory of Molecular Chemistry, Materials and Environment, Faculty Multidisciplinary Nador, University Mohamed Premier B.P. 300, Selouane Nador 62700 Morocco

ISET, ENSA, Ibn Tofayl University of Kénitra 14000 Kénitra Morocco.

出版信息

RSC Adv. 2020 Jul 28;10(47):28007-28018. doi: 10.1039/d0ra05163b. eCollection 2020 Jul 27.

Abstract

In this work, Zn co-doped tungsten bronze having nominal formula BaCaTiZnNbO has been synthesized and systematically studied for structure, dielectric and electrical properties. The formation of the phase of tetragonal tungsten bronze with space group 4 and the occurrence of oxygen vacancies were verified by the Rietveld refinement using X-ray diffraction data. Scanning electron microscopy (SEM) of BaCaTiZnNbO ceramic shows high densification, low porosity, and homogeneous distribution of grains of different sizes over the total surface. The sample shows a dielectric anomaly of ferroelectric paraelectric type at 262 °C, and has non-relaxor type of diffuse phase transition. The electrical property (complex impedance *, complex permittivity *, complex modulus *) of BaCaTiZnNbO ceramic has been investigated by non-destructive complex impedance spectroscopy (CIS) as a function of frequency at different temperatures. Grains and grain boundaries conduction is detected from a complex impedance spectrum by fitting the Nyquist plot with an appropriate electrical circuit. The Nyquist plot indicates the negative temperature coefficient of resistance (NTCR) character of BaCaTiZnNbO ceramic. The variation of AC conductivity as a function of frequency reveals that the compound has an Arrhenius-type behavior of electrical conductivity. The DC electrical conductivities of grains and grain boundaries have been studied. The presence of non-Debye relaxations was verified by a complex modulus analysis.

摘要

在本工作中,合成了标称化学式为BaCaTiZnNbO的锌共掺杂钨青铜,并对其结构、介电和电学性能进行了系统研究。利用X射线衍射数据通过Rietveld精修验证了具有空间群4的四方钨青铜相的形成以及氧空位的出现。BaCaTiZnNbO陶瓷的扫描电子显微镜(SEM)显示出高致密化、低孔隙率以及不同尺寸晶粒在整个表面上的均匀分布。该样品在262℃时表现出铁电-顺电型的介电异常,并且具有非弛豫型的弥散相变。通过无损复阻抗谱(CIS)研究了BaCaTiZnNbO陶瓷在不同温度下作为频率函数的电学性质(复阻抗*、复介电常数*、复模量*)。通过用合适的电路拟合奈奎斯特图,从复阻抗谱中检测到晶粒和晶界传导。奈奎斯特图表明BaCaTiZnNbO陶瓷具有负电阻温度系数(NTCR)特性。交流电导率随频率的变化表明该化合物具有阿仑尼乌斯型的电导率行为。研究了晶粒和晶界的直流电导率。通过复模量分析验证了非德拜弛豫的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fef3/9055657/64cf1385aecc/d0ra05163b-f1.jpg

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