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Immittance Studies of Bi

机译:BI的常见研究

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摘要

Results of studies focusing on the electric behavior of Bi6Fe2Ti3O18 (BFTO) ceramics are reported. BFTO ceramics were fabricated by solid state reaction methods. The simple oxides Bi2O3, TiO2, and Fe2O3 were used as starting materials. Immittance spectroscopy was chosen as a method to characterize electric and dielectric properties of polycrystalline ceramics. The experimental data were measured in the frequency range Δν = (10−1–107) Hz and the temperature range ΔT = (−120–200) °C. Analysis of immittance data was performed in terms of complex impedance, electric modulus function, and conductivity. The activation energy corresponding to a non-Debye type of relaxation was found to be EA = 0.573 eV, whereas the activation energy of conductivity relaxation frequency was found to be EA = 0.570 eV. An assumption of a hopping conductivity mechanism for BFTO ceramics was studied by ‘universal’ Jonscher’s law. A value of the exponents was found to be within the “Jonscher’s range” (0.54 ≤ n ≤ 0.72). The dc-conductivity was extracted from the measurements. Activation energy for dc-conductivity was calculated to be EDC = 0.78 eV, whereas the dc hopping activation energy was found to be EH = 0.63 eV. The obtained results were discussed in terms of the jump relaxation model.
机译:报道了重点研究陶瓷的电动行为的研究结果。通过固态反应方法制造BFTO陶瓷。使用简单的氧化物Bi2O3,TiO 2和Fe 2 O 3用作原料。选择常见光谱选择作为表征多晶陶瓷电气和介电性质的方法。在频率范围ΔΣ=(10-1-107)Hz和温度范围ΔT=(-120-200)℃下测量实验数据。在复杂阻抗,电模量函数和电导率方面进行常见数据的分析。发现对应于非德德德型弛豫类型的激活能量是EA = 0.573eV,而导电性松弛频率的激活能量被发现是EA = 0.570eV。通过“普遍”的Jonscher的法律研究了BFTO陶瓷的跳跃电导率机制的假设。发现指数的值在“Jonscher范围”内(0.54≤n≤0.72)。从测量中提取直流电率。对DC导电性的激活能量被计算为EDC = 0.78eV,而发现直流跳跃激活能量是EH = 0.63eV。在跳跃松弛模型方面讨论了所得结果。

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