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首页> 外文期刊>Journal of the European Ceramic Society >Influence of BaSnO3 additive on the energy storage properties of Na0.5Bi0.5TiO3-based relaxor ferroelectrics
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Influence of BaSnO3 additive on the energy storage properties of Na0.5Bi0.5TiO3-based relaxor ferroelectrics

机译:BasnO3添加剂对Na0.5Bi0.5TiO3储存性能储能性能的影响

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摘要

(1-x)NBT-xBSN (0.1 = x = 0.35) ceramics were prepared by solid state methods and their energy storage properties and high-temperature capacitor applications were systematically investigated. All samples showed a perovskite structure and the structure transformed to lower symmetry orthorhombic phase (x = 0.1) from rhombohedral phase (x 0.1) to with the addition of BSN. The more addition content of BSN significantly decreases phase transition temperature T-m of NBT ceramics. The x = 0.25 sample exhibits a stable relative permittivity of 1605 +/- 15% in a broad temperature range of 38 degrees C to 319 degrees C. With increasing BSN concentration, the slope of the P-E loops and the energy loss gradually decreases. When x = 0.25, a high breakdown strength of 190 kV/cm and the maximum discharge energy density of 1.91 J/cm(3) were obtained, of which the energy efficiency was as high as 86.4%. Thus, it was believed that our work could provide a significant guidance for designing the new system for energy storage.
机译:(1-X)NBT-XBsn(0.1 = x& = 0.35)通过固态方法制备陶瓷,系统地研究了它们的储能性能和高温电容器应用。所有样品均显示钙钛矿结构,并且结构从菱形相(X< 0.1)中转化为较低对称正交相(X> = 0.1)以加入BSN。 BSN的越多含量显着降低了NBT陶瓷的相变温度T-M。 X = 0.25样品在宽温度范围为38℃至319摄氏度的稳定相对介质1605 +/- 15%。随着BSN浓度的增加,P-E环的斜率和能量损失逐渐降低。当x = 0.25时,获得高击穿强度为190 kV / cm,最大放电能量密度为1.91J / cm(3),其中能量效率高达86.4%。因此,据信我们的工作可以为设计能量存储的新系统提供重大指导。

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