两种方法制备铁氧体锰粉的复阻抗

I. Malaescu, A. Lungu, C. Marin, P. Vlăzan, P. Sfirloaga
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引用次数: 2

摘要

摘要:采用煅烧法(试样A)和水热法(试样B)制备了两种铁酸锰粉末样品,并用x射线衍射分析(XRD)对样品的晶体结构进行了表征。结果表明:样品A有三个相(FeMnO3、Mn2O3和Fe2O3),主要相为具有钙钛矿结构的FeMnO3,而样品B只有一个单相(MnFe2O4)。用扫描电镜(SEM)分析了晶粒形貌,并用能谱(EDAX)分析了成分。给出了频率(f)和温度(T)相关的复阻抗Z(f, T) = Z′(f, T) - i Z′(f, T),频率范围为20hz - 2mhz,温度范围为300C至1100C。从这些测量中,我们发现弛豫时间的温度依赖是阿尼乌斯型的,这表明传导过程是热激活的。得到的活化能Ea值分别为:16meV(样品A)和147.65meV(样品B)。应用复阻抗谱技术,得到的结果显示在测量范围内的每个温度下都是一个单一的半圆形状,这意味着电过程服从单一的弛缓机制。等效电路的阻抗和相关参数取决于样品的温度和微观结构。所研究样品的电阻性和容性受晶界机制相关的传导和弛豫过程的支配。
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Complex Impedance of Manganese Ferrite Powders Obtained by Two Different Methods
Abstract Two samples of manganese ferrite powder were obtained by the calcination method (sample A) and hydrothermal method (sample B). The crystal structure of the samples has been determined using X-ray diffraction analysis (XRD). The results shown that the sample A has three phases (FeMnO3, Mn2O3 and Fe2O3) and the prevailing phase is FeMnO3 with perovskite structure and the sample B has only a single phase (MnFe2O4). The grain morphology was analyzed by scanning electron microscopy (SEM) and the compositional analysis was done by energy dispersive spectroscopy (EDAX). Measurements of the frequency (f) and temperature (T) dependent complex impedance, Z(f, T) = Z’(f, T) - i Z’’(f, T) of the samples over the frequency range 20 Hz - 2 MHz, at various temperature values from 300C to 1100C are presented. From these measurements, we have shown that the temperature dependence of the relaxation time is of Arhenius type, which suggests that the conduction process is thermally activated. The values obtained for the activation energy Ea, are: 16meV (sample A) and 147.65meV (sample B). Applying complex impedance spectroscopy technique, the obtained results shows the shape of a single semicircle at each temperature over the measurement range, meaning that the electrical process obeys to a single relaxation mechanism. The impedance and related parameters of the electrical equivalent circuit depend on the temperature and the microstructure of samples. The resistive and capacitive properties of the investigated samples are dominated with the conduction and relaxation processes associated with the grain boundaries mechanism..
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