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Energy storage properties of BNT-BT based solid solution

机译:基于BNT-BT基固溶体的能量储存性能

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The phase structure, microstructure, dielectric and energy storage properties of 0.85(0.92BiNaTiO-0.08BaTiO)-0.15(NaBiNbO) (BNTBT-NBN) polycrystalline lead-free ceramics were systematically investigated. Dense and pore-free samples were prepared by conventional solid state reaction method. X-ray diffraction results indicated that the solid solubility of Bi in BNTBT-NBN system lay at x=0.05~0.07. Within the solid solubility, the first dielectric anomaly which located at temperature T was depressed and shifted towards lower temperature with x increasing. As a consequence, the temperature stability of dielectric properties was largely improved, which demonstrated that BNTBT-NBN ceramics were promising for high-temperature capacitor dielectrics. The ferroelectric properties analysis indicated that with the increase of x, the maximum polarization P gradually reduced and the P-E loops became slant and slim. The optimum energy storage properties was obtained for x=0.05 with energy storage density W=1.29J/cm and energy storage efficiency η=76%.
机译:系统地研究了0.85(0.92binatiO-0.08batiO)-0.15(Nabinbo)(BNTBT-NBN)多晶无铅陶瓷的相结构,微观结构,介电和能量储存性能。通过常规固态反应方法制备致密和无孔样品。 X射线衍射结果表明,BI在BNTBT-NBN系统中的固体溶解度置于X = 0.05〜0.07。在固体溶解度内,抑制位于温度T的第一介电异常并随X增加而朝向更低的温度移位。结果,电介质性质的温度稳定性大大提高,这证明了BNTBT-NBN陶瓷对高温电容器电介质具有很有希望。铁电特性分析表明,随着X的增加,最大偏振P逐渐降低,P-E环变为倾斜和纤薄。获得最佳能量储存性能,具有磁性储存密度W = 1.29J / cm和储能效率η= 76%。

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