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首页> 外文期刊>Journal of the European Ceramic Society >Internal and external relaxations in ZnNb2O6 ceramics
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Internal and external relaxations in ZnNb2O6 ceramics

机译:ZnNb2O6陶瓷的内部和外部弛豫

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摘要

ZnNb2O6 ceramics were prepared via conventional solid-state reaction route. The dielectric properties of ZnNb2O6 were investigated in the temperature range from room temperature (RT) to 700 degrees C and frequency range of 10(3) - 2 x 10(6) Hz. Our results revealed that the sample exhibits an intrinsic dielectric response with a dielectric constant of similar to 20.9 below 150 degrees C followed by two thermally activated relaxations (R1 and R2) at higher temperatures. Both R1 and R2 are related to oxygen vacancies inherent in the sample. At temperatures higher than similar to 550 degrees C, an external relaxation (R3) induced by dc bias was observed. By means of the dielectric permittivity, electric modulus, impedance and admittance, R1 was attributed to be a dipole-type relaxation due to the hoping motions of oxygen vacancies. R2 and R3 were ascribed to be a Maxwell-Wagner-type relaxation resulting from the space charge due to the hoping vacancies blocked by grain boundaries and electrodes, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:ZnNb2O6陶瓷是通过常规的固态反应路线制备的。在室温(RT)到700摄氏度的温度范围和10(3)-2 x 10(6)Hz的频率范围内研究了ZnNb2O6的介电性能。我们的结果表明,样品表现出固有的介电响应,在150摄氏度以下的介电常数接近20.9,随后在较高的温度下出现两个热活化弛豫(R1和R2)。 R1和R2都与样品中固有的氧空位有关。在高于类似于550摄氏度的温度下,观察到了由直流偏置引起的外部弛豫(R3)。借助于介电常数,电模量,阻抗和导纳,R1被归因于氧空位的跳跃运动引起的偶极型弛豫。 R 2和R 3归因于Maxwell-Wagner型弛豫,这是由于希望空位分别被晶界和电极阻挡而由空间电荷引起的。 (C)2016 Elsevier Ltd.保留所有权利。

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