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首页> 外文期刊>Journal of Electronic Materials >Effects of Composition on Dielectric Properties of (Ba,Ca)(Zr,Ti)O-3 Ceramics for Energy Storage Capacitors
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Effects of Composition on Dielectric Properties of (Ba,Ca)(Zr,Ti)O-3 Ceramics for Energy Storage Capacitors

机译:组合物对储能电容器(Zr,Ti)O-3陶瓷介电性能的影响

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Ba1-x Ca (x) Zr0.2Ti0.8O3 (x = 0, 0.05, 0.10) and Ba0.95Ca0.05Zr (y) Ti1-y O-3 (y = 0.20, 0.25, 0.30) ceramics have been prepared by a citrate method and their structure, energy storage density, ferroelectric phase transition behavior, and dielectric nonlinearity investigated. All specimens showed cubic perovskite structure at room temperature. The energy storage density of the specimens at given electric field of 120 kV/cm was similar at around 0.40 J/cm(3). In contrast, the degree of relaxor behavior of the specimens varied with changing A- or B-site composition. Compared with increasing calcium content at A-site, increasing zirconium content at B-site more readily induced pronounced relaxor behavior. The dielectric constant of the specimens under bias electric field dropped to a common level at high field. Fitting the nonlinear dielectric response under bias field using a multipolarization mechanism model resolved the contributions of various polarization mechanisms. It turned out that the extrinsic contribution of polar nanoregions faded out within the low-field range, with intrinsic lattice phonon polarization governing the overall dielectric response at high field. Moreover, characteristic parameters of the polarization mechanisms were determined from the fitting. Based on these fitting results, the differing composition dependence of the energy storage density and relaxor behavior were explained.
机译:Ba1-x Ca(x)zr0.2ti0.8O3(x = 0,0.05,0.10)和ba0.95ca0.05zr(y)ti1-y o-3(y = 0.20,0.25,0.30,0.30)陶瓷已经编制柠檬酸法及其结构,能量存储密度,铁电相转变行为和介电非线性研究。所有标本在室温下显示立方钙钛矿结构。给定电场的样品的能量储存密度为120kV / cm,在约0.40J / cm(3)范围内相似。相反,样品的松弛行为程度随变化的A-或B位点组合物而变化。与在A现场的钙含量增加,增加B-Site的锆含量更容易诱导发音放松的动态。偏置电场下标本的介电常数降至高场的常见水平。使用多极化机制模型拟合偏置场下的非线性介电响应,解决了各种偏振机构的贡献。事实证明,极地纳米导致在低场范围内褪色的外部贡献,具有控制高场的总电介质响应的内在晶格声子偏振。此外,从配件确定偏振机构的特征参数。基于这些拟合结果,解释了能量储存密度和放松行为的不同组成依赖性。

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