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首页> 外文期刊>Journal of Applied Physics >Space-charge electret properties of polypropylene films with transcrystalline or spherulitic structures- A comparison of functionalities at interfaces
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Space-charge electret properties of polypropylene films with transcrystalline or spherulitic structures- A comparison of functionalities at interfaces

机译:聚丙烯薄膜具有经基晶体或球晶结构的空穴抵烧驻极体性能 - 界面官能团的比较

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摘要

Spherulite-related space-charge electret properties of polypropylene (PP) have been widely discussed in the past decades. In the present paper, a less-common crystalline structure in PP-transcrystalline PP-is studied regarding its electret behavior in comparison with the typical spherulitic morphology. Polarized light microscopy and differential scanning calorimetry were employed to characterize the crystallite types and crystallinities of transcrystalline and spherulitic PP. Their electret functionality is investigated by means of thermally stimulated discharge experiments, where the cross-over phenomenon is observed on transcrystalline PP films, whereas surface-potential saturation and undercharging on the surface occur on the spherulitic samples. Besides, an asymmetrical behavior of positive and negative surface-charge stabilities is found on PP with spherulites, the negatively charged spherulitic surfaces show a better charge stability. It is shown that PP electrets are very sensitive to changes in the microscopic crystalline structures and their interfaces as well as in the molecular conformations controlled through adjustments of the respective processing steps. In addition, surface and bulk nanocomposites of PP or low-density polyethylene with inorganic particles are included in the comparison. In view of recent developments in the areas of PP-based electret-fiber filters and cellular-foam ferroelectrets, the observed changes in the charge-storage properties may have particular relevance, as the required film, fiber, or foam processing might significantly modify crystalline morphologies and nano-scale interfaces in PP electrets. Limitations in the charge-storage capabilities of interface structures may also be of interest in the context of high-voltage electrical-insulation materials where reduced space-charge accumulation and slightly increased charge transport can be advantageous.
机译:与过去几十年来说,聚丙烯(PP)的孢子座相关的空穴电荷特性已被广泛讨论。在本文中,研究了与典型的阵挛性形态相比其驻极体行为的PP-经晶PP-PP-经晶PP的少常见结构。使用偏振光显微镜和差示扫描量热法来表征晶状体类型和晶状体和球晶PP的晶状体。通过热刺激的放电实验研究了它们的驻极体功能,其中在经晶PP膜上观察到交叉现象,而在球晶样品上发生表面潜在饱和度并在表面上发生充电。此外,在具有球晶的PP上发现正面和负面表面充电稳定性的不对称行为,带负电的球晶表面显示出更好的电荷稳定性。结果表明,通过调节各自的处理步骤,PP Electren对微观晶体结构及其界面的变化非常敏感,以及通过各自的处理步骤的调节控制。另外,PP或低密度聚乙烯的表面和块状纳米复合材料在比较中包括无机颗粒。鉴于PP基驻极纤维滤光器和蜂窝泡沫纤维滤光器领域的最新发展,所观察到的电荷储存性能的变化可以特别相关,作为所需的薄膜,纤维或泡沫处理可能会显着修改晶体PP Electrs中的形态学和纳米级界面。界面结构的电荷存储能力的限制也可能对高压电绝缘材料的背景感兴趣,其中空间 - 电荷累积和略微增加的电荷传输可能是有利的。

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  • 来源
    《Journal of Applied Physics》 |2021年第6期|064101.1-064101.7|共7页
  • 作者单位

    Institute of Physics and Astronomy Faculty of Science University of Potsdam Karl-Liebknecht-Strasse 24-25 Building 28 14476 Potsdam Germany;

    Institute of Physics and Astronomy Faculty of Science University of Potsdam Karl-Liebknecht-Strasse 24-25 Building 28 14476 Potsdam Germany;

    Institute of Physics and Astronomy Faculty of Science University of Potsdam Karl-Liebknecht-Strasse 24-25 Building 28 14476 Potsdam Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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