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Chemical modification with orthophosphoric acid enhances surface-charge stability on polypropylene electrets

机译:用正磷酸进行化学修饰可增强聚丙烯驻极体的表面电荷稳定性

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摘要

The low surface-charge stability of polypropylene (PP) frequently limits its application as an electret material. In this paper, we demonstrate how the treatment of PP-film surfaces with orthophosphoric acid (H_3PO_4) enhances their charge stability. To discriminate between the effects of chemical modification and thermal treatment, as-received and annealed PP films are used as reference samples. The electret properties of treated and non-treated PP films are characterized with thermally stimulated discharge (TSD) and isothermal surface-potential decay (ISPD) experiments, from which considerable improvement in thermal and temporal charge stability is observed for samples modified with H_3PO_4. The half-value temperature (T_(1/2)) observed on TSD curves of chemically treated PP increases to 131 and 145 ℃ for positive and negative charges, respectively. The enhancement might be attributed to the phosphoric compounds detected on the H_3PO_4-modified surfaces via attenuated-total-reflection infrared spectroscopy. Deeper surface traps formed at the "foreign" phosphorus-containing structures are able to capture the charges over longer time periods and at higher temperatures, thus leading to significant improvements in the temporal and thermal surface-charge stabilities of PP electrets.
机译:聚丙烯(PP)的低表面电荷稳定性经常限制其作为驻极体材料的应用。在本文中,我们演示了用正磷酸(H_3PO_4)处理PP膜表面如何增强其电荷稳定性。为了区分化学改性和热处理的效果,将原样和退火的PP薄膜用作参考样品。通过热刺激放电(TSD)和等温表面电势衰减(ISPD)实验来表征已处理和未处理PP膜的驻极体性能,从中可以观察到用H_3PO_4修饰的样品在热和时间电荷稳定性方面的显着改善。在化学处理的PP的TSD曲线上观察到的半值温度(T_(1/2))分别带正电和负电,分别升至131和145℃。增强可能归因于通过衰减全反射红外光谱法在H_3PO_4修饰的表面上检测到的磷化合物。在“外部”含磷结构上形成的更深的表面陷阱能够在更长的时间段和更高的温度下捕获电荷,从而导致PP驻极体的时间和热表面电荷稳定性得到显着改善。

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  • 来源
    《Applied Physics Letters》 |2017年第19期|192901.1-192901.5|共5页
  • 作者单位

    Applied Condensed-Matter Physics, Department of Physics and Astronomy, Faculty of Science, University of Potsdam, Karl-Liebknecht-Strasse 24-25,14476 Potsdam-Golm, Germany;

    Applied Condensed-Matter Physics, Department of Physics and Astronomy, Faculty of Science, University of Potsdam, Karl-Liebknecht-Strasse 24-25,14476 Potsdam-Golm, Germany;

    Applied Condensed-Matter Physics, Department of Physics and Astronomy, Faculty of Science, University of Potsdam, Karl-Liebknecht-Strasse 24-25,14476 Potsdam-Golm, 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);
  • 原文格式 PDF
  • 正文语种 eng
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