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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Surface Modification of Poly(tetrafluoroethylene) by a Low-Temperature Cascade Arc Torch and Radio-Frequency Plasmas
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Surface Modification of Poly(tetrafluoroethylene) by a Low-Temperature Cascade Arc Torch and Radio-Frequency Plasmas

机译:低温级联电弧炬和射频等离子体对聚四氟乙烯的表面改性

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摘要

Poly(tetrafluoroethylene) (PTEE) films were treated with a low-temperature cascade are torch (LTCAT) and radio-frequency (RF) plasmas of argon and hydrogen. The plasma-treatment effect on the PTFE surface was studied with contact-angle measurement and scanning electron spectroscopy (SEM). LTCAT argon plasma, which is recognized as a beam of excited argon neutrals, was very efficient at improving the surface hydrophilicity of PTFE. For both the LTCAT and RF operation, argon plasma was more effective at modifying the surface wettability of PTFE films than hydrogen plasma was. Furthermore, the sample positions (inside or beyond the glow region) had a strong impact on the efficiency of the plasma treatment. SEM surface images indicated that no significant morphology change was induced on the PTFE films exposed to a LTCAT and RF argon plasmas.
机译:用低温级联炬管(LTCAT)和氩气和氢气的射频(RF)等离子体处理了聚四氟乙烯(PTEE)薄膜。通过接触角测量和扫描电子光谱(SEM)研究了等离子体处理对PTFE表面的影响。 LTCAT氩等离子体被认为是激发氩中性离子束,在提高PTFE的表面亲水性方面非常有效。对于LTCAT和RF操作,与氢等离子体相比,氩等离子体在改变PTFE膜的表面润湿性方面更有效。此外,样品位置(辉光区域的内部或外部)对等离子体处理的效率有很大影响。 SEM表面图像表明,暴露于LTCAT和RF氩等离子体的PTFE膜没有引起明显的形态变化。

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