首页> 外文期刊>Journal of the European Ceramic Society >Dielectric relaxation and ac conductivity in magnetoelectric YCrO3 ceramics: A temperature dependent impedance spectroscopy analysis
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Dielectric relaxation and ac conductivity in magnetoelectric YCrO3 ceramics: A temperature dependent impedance spectroscopy analysis

机译:磁电YCRO3陶瓷中的介电弛豫和交流电导率:温度依赖性阻抗光谱分析

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摘要

Here, we report on the temperature and frequency dependent electrical conduction and dielectric behaviour of YCrO3 ceramics. Dielectric studies reveal a peak in the dielectric constant similar to 230 K, suggesting presence of spin-charge coupling. Also, an additional broad peak found at similar to 450 K is reminiscent of a relaxor like behaviour for YCrO3, attributed to a diffused phase transition. The nature of dc conductivity is of Arrhenius type and shows an abrupt change in the activation energy at similar to 230 K and similar to 450 K. The activation energy suggests that the polaronic hopping mechanism stabilizes at low temperature while, at higher temperatures, the process is associated with the diffusion of double ionized oxygen vacancies. However, ac conductivity suggests that the overlapping large polaron tunnelling conduction mechanism drives the ac conduction below 300 K and above 300 K, the conduction behaviour is consistent with the correlated barrier hopping conduction mechanism.
机译:在这里,我们报告了YCrO3陶瓷的温度和频率依赖性导电和介电行为。介电研究显示介电常数中有一个类似于230K的峰值,表明存在自旋-电荷耦合。此外,在450 K附近发现的另一个宽峰让人想起YCrO3的类弛豫行为,这归因于扩散相变。直流电导率的性质为Arrhenius型,在类似于230 K和类似于450 K的温度下,活化能发生突变。活化能表明,极化子跳跃机制在低温下稳定,而在较高温度下,该过程与双电离氧空位的扩散有关。然而,交流电导表明,重叠的大极化子隧穿导电机制在300K以下和300K以上驱动交流导电,导电行为与相关的势垒跳跃导电机制一致。

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