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Nitrogen plasma-based ion implantation of poly(tetrafluoroethylene): Effect of the main parameters on the surface properties

机译:聚四氟乙烯基于氮等离子体的离子注入:主要参数对表面性能的影响

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摘要

The surface of poly(tetrafluoroethylene) (PTFE or Teflon) was treated by nitrogen plasma-based ion implantation. Accelerating voltages between 15 and 30 kV, fluences between 1×10~(17) and 3× 10~(17)cm~(-2) and fluence rates between 3×10~(13) and 7×10~(13) cm~(-2 )s~(-1) were applied. The effects of these main parameters were examined on the evolution of surface chemical composition, mean roughness, abrasive wear, wettability and surface electrical resistance. The aim was to obtain relationships, enabling to control the surface properties examined.rnThe F/C atomic ratio determined by XPS strongly decreased, correlating inversely with voltage. The mean surface roughness characterized by topography measurements, increased, correlating directly with fluence and inversely with voltage. The wear volume obtained by multipass scratch tests did not show clear relationship with the main process parameters, however, it increased upon treatment with the increase of surface roughness and O/C atomic ratio. The water contact angle increased at low voltages and high fluences, due to preferential increase of roughness, and decreased at high voltages and low fluences, owing to intense defluorination and incorporation of N and O. The electrical resistance of the PBⅡ-treated surfaces decreased by several orders of magnitude, showing a significant inverse correlation with fluence. It continued to decrease for samples exposed to air, primarily after treatments performed with low fluences, due to post-treatment type oxidation.
机译:聚四氟乙烯(PTFE或特氟隆)的表面通过基于氮等离子体的离子注入进行处理。加速电压在15到30 kV之间,注量在1×10〜(17)和3×10〜(17)cm〜(-2)之间,注量率在3×10〜(13)和7×10〜(13)之间施加cm〜(-2)s〜(-1)。研究了这些主要参数对表面化学成分,平均粗糙度,磨料磨损,润湿性和表面电阻的变化的影响。目的是获得关系,从而能够控制所检查的表面性质。XPS测定的F / C原子比大大降低,与电压成反比。由形貌测量表征的平均表面粗糙度增加,与通量直接相关,与电压成反比。通过多次通过刮擦测试获得的磨损量与主要工艺参数没有明确的关系,但是随着表面粗糙度和O / C原子比的增加,磨损量增加。在低压和高通量下,水接触角由于粗糙度的优先增加而增加,而在高压和低通量下,由于强烈的脱氟和N和O的结合,水接触角减小。PBⅡ处理过的表面的电阻降低了几个数量级,显示出与注量的显着反相关。对于暴露于空气中的样品,由于后处理类型的氧化,主要在以低通量进行处理之后,其持续降低。

著录项

  • 来源
    《Applied Surface Science》 |2010年第21期|P.6385-6389|共5页
  • 作者单位

    Institute of Materials and Environmental Chemistry, Chemical Research Center, Hungarian Academy of Sciences, H-1025 Pusztaszeri ut 59-67, Budapest, Hungary;

    rnInstitute of Materials and Environmental Chemistry, Chemical Research Center, Hungarian Academy of Sciences, H-1025 Pusztaszeri ut 59-67, Budapest, Hungary;

    rnInstitute of Materials and Environmental Chemistry, Chemical Research Center, Hungarian Academy of Sciences, H-1025 Pusztaszeri ut 59-67, Budapest, Hungary;

    rnInstitute of Materials and Environmental Chemistry, Chemical Research Center, Hungarian Academy of Sciences, H-1025 Pusztaszeri ut 59-67, Budapest, Hungary;

    rnInstitute of Materials and Environmental Chemistry, Chemical Research Center, Hungarian Academy of Sciences, H-1025 Pusztaszeri ut 59-67, Budapest, Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    poly(tetrafluoroethylene); plasma-based ion implantation; XPS; roughness; wear; wettability; electrical resistance;

    机译:聚四氟乙烯基于等离子体的离子注入;XPS;粗糙度穿;润湿性电阻;
  • 入库时间 2022-08-18 03:07:33

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