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首页> 外文期刊>Journal of surface science and technology >Dielectric Properties of Composites of Polypropylene with Zno-TiO_2 Core-Shell Nanoparticles
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Dielectric Properties of Composites of Polypropylene with Zno-TiO_2 Core-Shell Nanoparticles

机译:用ZnO-TiO_2核 - 壳纳米粒子复合材料的介电性能

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摘要

Composites of polypropylene with different weight percentages of ZnO-TiO_2 core-shell nanoparticles were prepared by the combination of solution and mixture melting methods. Dielectric properties of polypropylene composite films were studied at frequencies ranging from 50 Hz to 5 MHz at four different temperatures (313,333,353, and 373 K). It.is observed that the dielectric constant reduces quickly in the low-frequency range followed by a near frequency independent behavior above 1 KHz. The dielectric properties of composites at low frequency can be explained by interfacial polarization or Maxwell-Wagner-Sillars effect. It is also observed that the dielectric constant reaches the maximum value at 3 wt% of ZnO-TiO_2 which is the percolation threshold of nanocomposite. As the weight percentage of ZnO-TiO_2 increases beyond the percolation threshold up to 7%, the dielectric constant of the nanocomposites decreases. The dielectric loss of the composites follows the similar trend with frequency as the dielectric constant. A sharp increase in the dielectric loss of the nanocomposite observed near the percolation threshold is due to leakage current produced by the formation of conductive network by ZnO-TiO_2 core-shell nanoparticles. Further, peaks in the loss tangent observed for the nanocomposite systems indicating the appearance of a relaxation process. These relaxations peaks were shifted to higher frequencies as the particle content increased, since relaxation processes were influenced by the interfacial polarization effect which generated electric charge accumulation around the ZnO-TiO_2 core-shell nanoparticles.
机译:通过溶液和混合物熔化方法的组合制备具有不同重量百分比的ZnO-TiO_2核 - 壳纳米粒子的聚丙烯复合材料。在四种不同温度(313,333,353和373K)的50Hz至5MHz的频率下研究了聚丙烯复合膜的介电性质。它观察到介电常数在低频范围内快速减少,然后在1 kHz高于1 kHz之后的近频独立行为。可以通过界面极化或Maxwell-Wagner-Sillars效应来解释低频以低频率的介电性质。还观察到,介电常数达到3wt%的ZnO-TiO_2的最大值,这是纳米复合材料的渗透阈值。由于ZnO-TiO_2的重量百分比增加超过渗透阈值,高达7%,纳米复合材料的介电常数降低。复合材料的介电损耗跟随与频率常数的频率相似的趋势。在渗透阈值附近观察到的纳米复合材料的介电损耗的急剧增加是由于通过通过ZnO-TiO_2核 - 壳纳米颗粒形成导电网络而产生的漏电流。此外,对于纳米复合体系观察到的损耗切线中的峰值,其表示放松过程的外观。随着颗粒含量增加,这些弛豫峰被移位到更高的频率,因为松弛过程受偏移偏振效果的影响,该界面偏振效应是在ZnO-TiO_2核心壳纳米粒子周围产生的电荷积累的影响。

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