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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced energy storage performance of (1-x)(BCT-BMT)-xBFO lead-free relaxor ferroelectric ceramics in a broad temperature range
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Enhanced energy storage performance of (1-x)(BCT-BMT)-xBFO lead-free relaxor ferroelectric ceramics in a broad temperature range

机译:增强储能性能(1-x)(BCT-BMT)-XBFO无铅松弛剂铁电陶瓷在宽温度范围内

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摘要

Relaxor ferroelectrics with high energy storage performances are very attractive for modern applications in electronic devices and systems. Here, it is demonstrated that large energy densities (0.52-0.58 J/cm(3)) simultaneously with high efficiencies (76%-82%) and thermal stabilities (the minimum variation of efficiency < 4% from 323 K to 423 K at x = 0.04) have been achieved in the (1-x)(BCT-BMT)-xBFO lead-free relaxor ferroelectric ceramics prepared using a conventional solid-state reaction method. Large dielectric breakdown strengths and great relaxor dispersion around the dielectric peaks are responsible for the excellent energy storage performances. The energy storage performances of as-prepared ceramics at high BFO doping amount (x = 0.06 and 0.07) were deteriorated seriously due to low dielectric breakdown strengths. However, they could be greatly improved when aged, since the operable electric field was significantly enhanced from 10 kV/cm of as-prepared samples to 100 kV/cm of aged samples due to the reduced concentration of oxygen vacancies during the aging process. The excellent energy storage performances may make them attractive materials for applications in modern energy storage systems in a broad temperature range. (C) 2019 Elsevier B.V. All rights reserved.
机译:高储能性能的松弛剂铁电器对于电子设备和系统中的现代应用非常有吸引力。在这里,证明具有高效率的大能量密度(0.52-0.58 J / cm(3))(76%-82%)和热稳定性(效率的最小变化<4%从323k至423k x = 0.04)已经在(1-x)(BCT-BMT)-XBFO无铅弛豫池铁电陶瓷中实现,使用常规的固态反应方法制备。介电峰周围的大介电击穿强度和大量松弛剂色散负责优质的能量存储性能。由于低介电击穿强度,在高BFO掺杂量(x = 0.06和0.07)下,如制备的陶瓷的能量存储性能严重恶化。然而,当老化时,它们可以大大提高,因为可操作的电场由于在老化过程中氧空位的浓度降低,因此可操作的电场从10kV / cm的原制样品中得到100kV / cm的老化样品。优异的储能性能可以使它们具有宽高温范围内现代能量存储系统中的应用的吸引力。 (c)2019 Elsevier B.v.保留所有权利。

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