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首页> 外文期刊>Nanoscale >Suppressed polarization by epitaxial growth of SrTiO3 on BaTiO3 nanoparticles for high discharged energy density and efficiency nanocomposites
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Suppressed polarization by epitaxial growth of SrTiO3 on BaTiO3 nanoparticles for high discharged energy density and efficiency nanocomposites

机译:抑制偏振的外延生长SrTiO3对钛酸钡纳米粒子高放电的能量密度和效率纳米复合材料

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In order to meet the increasing demand of integration and miniaturization of electronic components, capacitors with high energy density are urgently needed. In this work, a strategy of suppressing interfacial polarization for obtaining enhanced energy density and efficiency polymer based nanocomposites is proposed. This strategy is conducted by epitaxial growth of a SrTiO3 layer with a moderate dielectric constant on the surface of a BaTiO3 core to form a kind of novel filler and compositing with the P(VDF-HFP) matrix to prepare dielectric nanocomposites. The SrTiO3 shell could effectively confine the mobility of charge carriers to enhance the dielectric strength of the composites and improve the energy efficiency by reducing the Maxwell-Wagner-Sillars (MWS) interfacial polarization and space charge polarization between the BaTiO3@SrTiO3 fillers and the P(VDF-HFP) matrix due to their similar crystal structure and lattice parameter. The nanocomposite containing 1 vol% BaTiO3@SrTiO3 nanoparticles achieved a discharged energy density of 13.89 J cm(-3) and an energy efficiency of 63% at 494.7 kV mm(-1), which are superior to 9.96 J cm-3 and 50% of BaTiO3/P(VDF-HFP) nanocomposites with the same loading, respectively, and its discharged energy density is 69% higher than 8.2 J cm(-3) of the neat P(VDF-HFP) at 401.5 kV mm(-1). This work provides an effective way for nanocomposite capacitors with high energy density and efficiency.
机译:为了满足日益增长的需求集成和小型化的电子组件,电容器能量密度高迫切需要。抑制界面极化的获得增强的能量密度和效率提出了基于聚合物纳米复合材料。策略是由外延生长SrTiO3层中等介电常数表面上的核心,形成一种钛酸钡新型填料和合成的P (VDF-HFP)矩阵介电纳米复合材料做准备。SrTiO3壳能有效地限制航空公司提高流动性复合材料的介电强度和改善能源效率降低Maxwell-Wagner-Sillars多工作站系统界面极化和空间电荷极化BaTiO3@SrTiO3填充物和之间P (VDF-HFP)矩阵由于其类似的水晶结构和晶格参数。包含1卷% BaTiO3@SrTiO3纳米复合材料纳米颗粒实现了放电能量密度13.89 J厘米(3)和能源的效率63%,报494.7 kV毫米(1),这是优于9.96 J cm-3和50%的钛酸钡/ P (VDF-HFP)纳米复合材料分别加载,其释放的能量密度是69%高于8.2厘米(3)整洁的P (VDF-HFP) 401.5 kV毫米(1)。为纳米复合材料提供了一个有效的方法电容器能量密度高效率。

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