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首页> 外文期刊>Journal of Engineering and Technology Research >Dielectric relaxation, electrical conductivity and impedance response of Barium titanate (BT) and Strontium titanate (ST) doped Ba(Fe0.5Nb0.5)O3 ceramics
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Dielectric relaxation, electrical conductivity and impedance response of Barium titanate (BT) and Strontium titanate (ST) doped Ba(Fe0.5Nb0.5)O3 ceramics

机译:钛酸钡(BT)和钛酸锶(ST)掺杂Ba(Fe0.5Nb0.5)O3陶瓷的介电弛豫,电导率和阻抗响应

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Lead-free polycrystalline ceramics of Ba(Fe0.5Nb0.5)O3and its solid solutions 0.91Ba(Fe0.5Nb0.5)O3-0.09BaTiO3(BFN-BT) and 0.91Ba(Fe0.5Nb0.5)O3-0.09SrTiO3(BFN-ST)were fabricated by a solid-state reaction process, and their electrical properties were characterized in a broad frequency range (100 Hz to 1 MHz) at a temperature range from 30 to 385°C. The prepared ceramics are single phased with monoclinic structure as confirmed by X-ray diffraction. The microstructure analysis was done by scanning electron microscope. Dielectric response show low temperature dielectric dispersion at low frequency showing space charge phenomena arising due to defects. Existence of sharp transition around (Tc~255°C) and broad transitions around (Tc~205°C) of dielectric constant (ε´) versus temperature is demonstrated in the complex perovskite in BFN-BT and BFN-ST ceramics respectively at different frequencies (10.82, 20.2 and 32.2 kHz). The relaxor property was analyzed by the broadening of the maximum dielectric permittivity as well as its shifting to high temperatures with the variation of frequency measurements. In the pure BFN ceramic, dielectric studies confirmed that the compound do not have dielectric anomaly at different frequencies (10.82, 20.2 and 32.2 kHz) and temperature ranges (30 to 385°C). The frequency-dependent electrical data are also analyzed in the framework of conductivity and impedance formalisms.
机译:Ba(Fe0.5Nb0.5)O3及其固溶体0.91Ba(Fe0.5Nb0.5)O3-0.09BaTiO3(BFN-BT)和0.91Ba(Fe0.5Nb0.5)O3-0.09SrTiO3的无铅多晶陶瓷(BFN-ST)是通过固态反应工艺制备的,其电性能在30至385°C的宽频率范围(100 Hz至1 MHz)中表征。制备的陶瓷是单相的,具有单斜晶结构,这是通过X射线衍射证实的。通过扫描电子显微镜进行显微结构分析。介电响应显示低频下的低温介电弥散,显示由于缺陷而引起的空间电荷现象。 BFN-BT和BFN-ST陶瓷中钙钛矿的复合钙钛矿在不同温度下分别存在(Tc〜255°C)的急剧转变和(Tc〜205°C)的介电常数(ε´)相对温度的宽转变。频率(10.82、20.2和32.2 kHz)。通过拓宽最大介电常数以及随着频率测量值的变化,其向高温转变,从而分析了弛豫性能。在纯BFN陶瓷中,电介质研究证实该化合物在不同的频率(10.82、20.2和32.2 kHz)和温度范围(30至385°C)下没有电介质异常。还在电导率和阻抗形式学的框架内分析了频率相关的电数据。

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