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Dielectric behavior and PTCR effect in nanocrystallite PMN ferroelectric ceramics

机译:纳米微晶PMN铁电陶瓷的介电行为和PTCR效应

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摘要

The ac behavior of a nanocrystallite lead magnesium niobate (PMN) ceramic sample was studied over a wide range of temperatures and frequencies. The results revealed a diffuse phase transition and very high dielectric constant at lower frequencies. The high value of the dielectric constant at lower frequencies is shown to be due to barrier layer formation. A positive temperature coefficient of resistivity (PTCR) was observed in the temperature dependence of the ceramic resistivity. The results are explained on the basis of the Heywang and Jonker models. The Schottky barrier formed at grain boundary regions acts as a trap for the electrons available from oxygen vacancies in the ceramics. This provides PTCR characteristics from the transition temperature to about 208°C.
机译:在很宽的温度和频率范围内研究了纳米微晶铌酸铅镁(PMN)陶瓷样品的交流行为。结果表明,在较低频率下存在扩散相变和很高的介电常数。较低频率下的介电常数的高值显示是由于势垒层的形成。在陶瓷电阻率的温度依赖性中观察到正电阻率温度系数(PTCR)。在Heywang和Jonker模型的基础上解释了结果。在晶界区域形成的肖特基势垒充当了从陶瓷中氧空位获得的电子的陷阱。这提供了从转变温度到约208°C的PTCR特性。

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