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Hydrothermal synthesis of BaTiO3 nanowires for high energy density nanocomposite capacitors

机译:用于高能量密度纳米复合电容器的BATIO3纳米线的水热合成

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摘要

One-dimensional inorganic high-k nanowires (NWs) show a potential of achieving high energy densities in polymer-matrix nanocomposite capacitors. In this study, we investigate a hydrothermal synthesis of BT NWs, by which BT NWs with high aspect ratios of pure phase, [110]-oriented structures were obtained. The BT NWs are filled in a polyvinylidene fluoride (PVDF) matrix to prepare nanocomposites and their dielectric and energy storage properties are investigated. An enhanced dielectric constant of epsilon(r) ~ 58 at 100 Hz is achieved in PVDF-BaTiO3 NWs (30 vol%), while the value is 47 for a traditional composite filled with BT nanoparticles (NPs). Besides, high breakdown strength of E-b > 362 MV/m is also achieved in the composites. PVDF-BaTiO3 NWs nanocomposite exhibits a high discharged energy density of U-d ~ 12.85 J/cm(3) at 300 MV/m at 100 Hz with a discharge efficiency of 58%. The simulation from the finite element analysis on distributions of voltage and electric displacement is studied and showed the consistency with experimental results. This study demonstrates a facile and large-scale route to the synthesis of BaTiO3 NWs for making high epsilon(r), E-b and U-d nanocomposite capacitors.
机译:一维无机高k纳米线(NWS)显示了在聚合物 - 基质纳米复合材料电容器中实现高能量密度的潜力。在该研究中,我们研究了BT NWS的水热合成,通过其中具有高纵横比的BT NWS,得到了[110] oriented结构。 BT NWS填充在聚偏二氟乙烯(PVDF)基质中以制备纳米复合材料,并研究它们的电介质和储能性能。在PVDF-BATIO3NWS(30体积%)中实现了100Hz的ε(R)〜58的增强介电常数,而该值为填充有BT纳米颗粒(NPS)的传统复合物的值为47。此外,在复合材料中也实现了E-B> 362mV / m的高击穿强度。 PVDF-BATIO3NWS纳米复合材料在100Hz的100Hz下在300mV / m处具有高放电的U-D〜12.85J / cm(3)的高放电能量密度,放电效率为58%。研究了电压和电位移分布的有限元分析的模拟,并显示了实验结果的一致性。该研究证明了用于制备高ε(R),E-B和U-D纳米复合电容器的BATIO3NWS的合成的容易和大规模的途径。

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