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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced dielectric properties of PVDF-HFP/BaTiO3-nanowire composites induced by interfacial polarization and wire-shape
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Enhanced dielectric properties of PVDF-HFP/BaTiO3-nanowire composites induced by interfacial polarization and wire-shape

机译:界面极化和线形引起的PVDF-HFP / BaTiO3-纳米线复合材料介电性能增强

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摘要

Polymer based composites with high dielectric constant were successfully fabricated using BaTiO3 nanowires with high aspect ratio as inorganic filler and PVDF-HFP as polymer matrix. PVDF-HFP/BaTiO3 nanoparticles composites were also prepared as a contrast. The BaTiO3 nanowires were synthesized via one-step hydrothermal method. The BaTiO3 nanowires and its two types of composites were characterized by X-ray diffraction, Fourier transform infrared spectroscopy, scanning electron microscopy and transmission electron microscopy. For the composites, breakdown strength measurements, tensile tests and broadband dielectric spectroscopy analyses were also carried out. The results show that the two types of fillers are homogeneously dispersed in the matrix. The dielectric constant of composites filled by BaTiO3 nanowires is larger than that filled by BaTiO3 nanoparticles at the same content. Stronger interfacial polarization was found in PVDF-HFP/BaTiO3 nanowire composites. Two theoretical models were employed to predict the dielectric constants of composites, and the experimental data were consistent with the estimated trend. The enhanced dielectric properties of PVDF-HFP/BaTiO3 nanowire composites are attributed to the superior interfacial polarization and high aspect ratio of BaTiO3 nanowires.
机译:以高长径比的BaTiO3纳米线为无机填料,以PVDF-HFP为聚合物基体,成功制备了高介电常数的聚合物基复合材料。作为对比,还制备了PVDF-HFP / BaTiO3纳米颗粒复合材料。通过一步水热法合成了BaTiO3纳米线。通过X射线衍射,傅立叶变换红外光谱,扫描电子显微镜和透射电子显微镜对BaTiO3纳米线及其两种复合材料进行了表征。对于复合材料,还进行了击穿强度测量,拉伸试验和宽带介电谱分析。结果表明两种填料均一地分散在基体中。在相同含量下,BaTiO3纳米线填充的复合材料的介电常数大于BaTiO3纳米线填充的复合材料的介电常数。在PVDF-HFP / BaTiO3纳米线复合材料中发现了更强的界面极化。采用两种理论模型来预测复合材料的介电常数,实验数据与估计趋势相吻合。 PVDF-HFP / BaTiO3纳米线复合材料增强的介电性能归因于BaTiO3纳米线的优异的界面极化和高纵横比。

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