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Low-frequency dielectric phenomena in BaTiO3/polymer nanocomposites

机译:BATIO3 /聚合物纳米复合材料中的低频介电现象

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BaTiO3 (BT) with various diameters were synthesized by alkoxide route and then loaded into different polymers (poly (vinylidene fluoride) (PVDF) and polyimide (PI)) at 50 vol. % to fabricate BT/PVDF and BT/PI nanocomposite films. The effects of nanoparticles and polymer matrixes on dielectric properties were studied in a wide range of frequency from 10−2 Hz to 106 Hz. A significant low-frequency dielectric permittivity increase was observed. Interfacial polarization and crystal phase effect are considered to analyze the significant increase at low frequency. A significant discrepancy between BT/PVDF and BT/PI composites in dielectric behaviors was discussed. Herein, nanoparticles influenced more on dielectric behavior in the BT/PVDF than in BT/PI composites. It resulted from the strong polarization interaction between ferroelectric BT phase and ferroelectric PVDF phase. Therefore, the roles of nanoparticles (size and crystal phases) and properties of polymers (chemistry and chain structure) are considered to explain the difference in dielectric behaviors.
机译:具有各种直径的BATIO 3 (BT)由醇盐进行合成,然后在50 Vol下装入不同的聚合物(聚(偏二氟乙烯)(PVDF)和聚酰亚胺(PI))中。 %用于制造BT / PVDF和BT / PI纳米复合膜。研究了纳米颗粒和聚合物基质对介电性质的影响,在宽范围内从10 -2 -2℃的频率范围为10 6℃。观察到显着的低频介电常数增加。认为界面极化和晶相效应被认为分析低频率的显着增加。讨论了BT / PVDF和BT / PI复合材料在介电行为之间的显着差异。在此,纳米颗粒在BT / PVDF中的介电行为中的影响比在BT / PI复合材料中更多。它来自铁电BT相和铁电PVDF相之间的强偏振相互作用。因此,认为纳米颗粒(尺寸和晶相)的作用和聚合物(化学和链结构)的性质被认为是解释介电行为的差异。

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