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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Core-satellite BaTiO3@SrTiO3 assemblies for a local compositionally graded relaxor ferroelectric capacitor with enhanced energy storage density and high energy efficiency
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Core-satellite BaTiO3@SrTiO3 assemblies for a local compositionally graded relaxor ferroelectric capacitor with enhanced energy storage density and high energy efficiency

机译:用于局部组成渐变弛豫铁电电容器的卫星芯BaTiO3 @ SrTiO3组件,具有更高的储能密度和高能效

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摘要

Dielectric capacitors with high energy density and low energy loss are of great importance in high power electric and electronic systems. Traditional BaTiO3 (BT) or its solid solutions have been widely explored as high energy density materials owing to their notably high dielectric constants. However, these materials often suffer from significant drawbacks of strong dielectric nonlinearity, low breakdown strength and high hysteresis loss, limiting the energy storage density and energy utilization efficiency. In this study, by using core-satellite structured nanocubic SrTiO3 (ST) decorated BT assemblies, a composite capacitor with enhanced breakdown strength and weaker dielectric nonlinearity was successfully fabricated in contrast with the pure ferroelectric BT ceramic, resulting in elevated energy storage density and high energy efficiency as extracted from the polarization-electric field loops. The mechanism behind the improved electric and dielectric performances was discovered to be the remarkable suppression of grain size owing to the existence of the ST nanocubes and also the ferroelectric relaxor behaviors arising from the local compositionally graded structure due to the controlled sintering and modulated diffusion of Sr. This work provided a new approach for fabrication of dielectric materials with promising high energy density and low loss.
机译:具有高能量密度和低能量损耗的介电电容器在大功率电气和电子系统中非常重要。由于传统的BaTiO3(BT)或其固溶体具有极高的介电常数,因此已被广泛用作高能量密度材料。然而,这些材料通常遭受明显的缺点,即强介电非线性,低击穿强度和高磁滞损耗,限制了能量存储密度和能量利用效率。在这项研究中,通过使用核芯结构的纳米立方SrTiO3(ST)装饰的BT组件,与纯铁电BT陶瓷相比,成功地制造了具有增强的击穿强度和较弱的介电非线性的复合电容器,从而提高了储能密度并提高了储能效率。从极化电场回路提取的能量效率。发现电学和介电性能改善的机理是:由于存在ST纳米立方体,显着抑制了晶粒尺寸;此外,由于Sr的受控烧结和调制扩散,由于局部成分梯度结构而产生的铁电弛豫行为这项工作为具有高能量密度和低损耗的介电材料制造提供了一种新方法。

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