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High energy storage density over a broad temperature range in sodium bismuth titanate-based lead-free ceramics

机译:钛酸铋钠基无铅陶瓷在宽温度范围内的高储能密度

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摘要

A series of (1-x)Bi0.48La0.02Na0.48Li0.02Ti0.98Zr0.02O3-xNa0.73Bi0.09NbO3 ((1-x)LLBNTZ-xNBN) (x = 0-0.14) ceramics were designed and fabricated using the conventional solid-state sintering method. The phase structure, microstructure, dielectric, ferroelectric and energy storage properties of the ceramics were systematically investigated. The results indicate that the addition of Na0.73Bi0.09NbO3 (NBN) could decrease the remnant polarization (P r) and improve the temperature stability of dielectric constant obviously. The working temperature range satisfying TCC 150  °C ≤±15% of this work spans over 400 °C with the compositions of x ≥ 0.06. The maximum energy storage density can be obtained for the sample with x = 0.10 at room temperature, with an energy storage density of 2.04 J/cm3 at 178 kV/cm. In addition, the (1-x)LLBNTZ-xNBN ceramics exhibit excellent energy storage properties over a wide temperature range from room temperature to 90 °C. The values of energy storage density and energy storage efficiency is 0.91 J/cm3 and 79.51%, respectively, for the 0.90LLBNTZ-0.10NBN ceramic at the condition of 100 kV/cm and 90 °C. It can be concluded that the (1-x)LLBNTZ-xNBN ceramics are promising lead-free candidate materials for energy storage devices over a broad temperature range.
机译:设计并制造了一系列(1-x)Bi0.48La0.02Na0.48Li0.02Ti0.98Zr0.02O3-xNa0.73Bi0.09NbO3((1-x)LLBNTZ-xNBN)(x = 0-0.14)陶瓷传统的固态烧结方法。系统地研究了陶瓷的相结构,微观结构,介电,铁电和储能性能。结果表明,添加Na0.73Bi0.09NbO3(NBN)可以降低剩余极化率(P r),并明显提高介电常数的温度稳定性。满足TCC 150 C≤±15%的工作温度范围跨越400 C,且组成x≥0.06。室温下x = 0.10的样品可获得最大储能密度,在178 kV / cm下储能密度为2.04 J / cm 3 。此外,(1-x)LLBNTZ-xNBN陶瓷在从室温到90°C的宽温度范围内均具有出色的储能性能。 0.90LLBNTZ-0.10NBN陶瓷在100 kV / cm和90 C条件下的储能密度和储能效率分别为0.91 J / cm 3 和79.51%。可以得出结论,(1-x)LLBNTZ-xNBN陶瓷是有希望在广泛温度范围内用于储能设备的无铅候选材料。

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