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Studies of the temperature and frequency dependent impedance of an electroceramic functional oxide NTC thermistor

机译:电陶瓷功能氧化物NTC热敏电阻的温度和频率相关阻抗的研究

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摘要

The charge transport mechanism and the macroscopic dielectric constant in polycrystalline device materials commonly exhibit several components such as electrode-sample interface, grain boundary and bulk contributions. In order to gain precise understanding of the functionality of polycrystalline electroceramic device materials it is essential to deconvolute these contributions. The paradigm of functional NTC thermistor ceramics based on thick film spinel manganates has been studied by temperature dependent alternating current impedance spectroscopy. Three typical relaxation phenomena were detected, which all showed a separated temperature dependence of resistivity consistent with thermally activated charge transport. The dominating grain boundary and the interface contributions exhibited distinctively different capacitance allowing clear identification. The composite nature of the dielectric properties in polycrystalline functional ceramics was emphasized, and impedance spectroscopy was shown to be a powerful tool to account for and model such behavior.
机译:多晶器件材料中的电荷传输机制和宏观介电常数通常表现出几种成分,例如电极-样品界面,晶界和体积贡献。为了获得对多晶电瓷器件材料功能的精确理解,必须对这些贡献进行反卷积。通过依赖温度的交流阻抗谱研究了基于厚膜尖晶石锰酸盐的功能性NTC热敏电阻陶瓷的范例。检测到三种典型的弛豫现象,它们均显示出电阻率与温度的独立关系,与热活化电荷传输一致。主要的晶界和界面贡献表现出明显不同的电容,从而可以清楚地识别。强调了多晶功能陶瓷中介电性能的复合性质,并且阻抗谱被证明是解释和模拟这种行为的有力工具。

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  • 作者

    Schmidt Rainer;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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