首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Conduction mechanism, impedance spectroscopic investigation and dielectric behavior of La0.5Ca0.5-xAgxMnO3 manganites with compositions below the concentration limit of silver solubility in perovskites (0 = x = 0.2)
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Conduction mechanism, impedance spectroscopic investigation and dielectric behavior of La0.5Ca0.5-xAgxMnO3 manganites with compositions below the concentration limit of silver solubility in perovskites (0 = x = 0.2)

机译:La0.5Ca0.5-xAgxMnO3锰矿的导电机理,阻抗谱研究和介电性能,其组成低于钙钛矿中银溶解度的浓度极限(0 <= x <= 0.2)

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This study presents the electrical properties, complex impedance analysis and dielectrical behavior of La0.5Ca0.5-xAgxMnO3 manganites with compositions below the concentration limit of silver solubility in perovskites (0 <= x <= 0.2). Transport measurements indicate that all the samples have a semiconductor-like behavior. The metal-semiconductor transition is not observed across the whole temperature range explored [80 K-700 K]. At a specific temperature, a saturation region was marked in the sigma (T) curves. We obtained a maximum sigma(dc) value at ambient temperature with the introduction of 20% Ag content. Two hopping models were applied to study the conduction mechanism. We found that activation energy (E-a) related to ac-conductivity is lower than the E-a implicated in dc-conductivity. Complex impedance analysis confirms the contribution of grain boundary to conductivity and permits the attribution of grain boundary capacitance evolution to the temperature dependence of the barrier layer width. From the temperature dependence of the average normalized change (ANC), we deduce the temperature at which the available density of trapped charge states vanishes. Such a temperature is close to the temperature at which the saturation region appears in sigma(T) curves. Moreover, complex impedance analysis (CIA) indicates the presence of electrical relaxation in materials. It is noteworthy that relaxation species such as defects may be responsible for electrical conduction. The dielectric behavior of La0.5Ca0.5-xAgxMnO3 manganites has a Debye-like relaxation with a sharp decrease in the real part of permittivity at a frequency where the imaginary part of permittivity (epsilon '') and tg delta plots versus frequency demonstrate a relaxation peak. The Debye-like relaxation is explained by Maxwell-Wagner (MW) polarization. Experimental results are found to be in good agreement with the Smit and Wijn theory.
机译:这项研究介绍了La0.5Ca0.5-xAgxMnO3锰矿的电性能,复阻抗分析和介电行为,其组成低于钙钛矿中银溶解度的浓度极限(0 <= x <= 0.2)。迁移率测量表明所有样品都具有类似半导体的行为。在探索的整个温度范围[80 K-700 K]中未观察到金属-半导体的转变。在特定温度下,在sigma(T)曲线中标记了一个饱和区域。通过引入20%的银含量,我们在环境温度下获得了最大sigma(dc)值。两种跳跃模型被用于研究传导机理。我们发现与交流电导率相关的活化能(E-a)低于直流电导率所涉及的E-a。复数阻抗分析证实了晶界对电导率的贡献,并使晶界电容的演化归因于势垒层宽度的温度依赖性。根据平均归一化变化(ANC)的温度依赖性,我们推论出所俘获电荷状态的可用密度消失的温度。这样的温度接近饱和区域在sigma(T)曲线中出现的温度。此外,复阻抗分析(CIA)表示材料中存在电弛豫。值得注意的是,诸如缺陷之类的弛豫物质可能是导电的原因。 La0.5Ca0.5-xAgxMnO3锰矿的介电行为具有Debye样的弛豫,在一个频率处的介电常数的实部急剧减小,在该频率处,介电常数的虚部(ε”和tgδ曲线相对于频率)显示出松弛峰。麦克斯韦-瓦格纳(MW)极化解释了类似德拜的弛豫。实验结果与Smit和Wijn理论非常吻合。

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