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Electrical properties, equivalent circuit, and dielectric relaxation studies on [(C3H4)4N]2Cd2Cl6 polycrystalline

机译:[(C3H4)4N] 2Cd2Cl6多晶的电性能,等效电路和介电弛豫研究

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The Ac electrical conductivity and the dielectric relaxation properties of the [(C3H7)4N]2Cd2Cl6 polycrystalline sample have been investigated by means of impedance spectroscopy measurements over a wide range of frequencies and temperatures, 209 Hz-5 MHz and 361-418 K, respectively. The purpose is to make a difference between the electrical and dielectric properties of the polycrystalline sample and single crystal. Besides, a detailed analysis of the impedance spectrum suggests that the electrical properties of the material are strongly temperature-dependent. Plots of (Z" versus Z') are well fitted to an equivalent circuit model consisting of a series combination of grains and grains boundary elements. Moreover, the temperature dependence of the electrical conductivity in the different phases follows the Arrhenius law and the frequency dependence of σ (ω) follows the Jonscher's universal dynamic law. Furthermore, the modulus plots can be characterized by full width at half height or in terms of a nonexperiential decay function φ(t)= exp(t/t)~β. Finally, the imaginary part of the permittivity constant is analyzed with the Cole-Cole formalism.
机译:[(C3H7)4N] 2Cd2Cl6多晶样品的交流电导率和介电弛豫特性已经通过在宽范围的频率和温度范围内(分别为209 Hz-5 MHz和361-418 K)进行阻抗谱测量进行了研究。 。目的是使多晶样品和单晶的电和介电性能有所不同。此外,对阻抗谱的详细分析表明,材料的电性能与温度密切相关。 (Z“ vs Z')的图很好地拟合了由晶粒和晶粒边界元素的一系列组合组成的等效电路模型,此外,不同相中电导率的温度依赖性遵循阿伦尼乌斯定律和频率依赖性σ(ω)遵循Jonscher的通用动力学定律,而且模量图可以用半高处的全宽或非经验衰减函数φ(t)= exp(t / t)〜β来表征。介电常数的虚部用Cole-Cole形式主义进行分析。

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