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Investigation on the Effects and Mechanisms of PTFE Surface Modification by Low Pressure Plasma

机译:低压等离子体对PTFE表面改性的作用及机理研究

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Using argon as the work gas, the effects and mechanisms of poly(tetrafluoroethylene) (PTFE) film surface modification were investigated in a low pressure plasma reactor. Results show that higher hydrophilicity with little degradation, in terms of the scanning electron microscopy (SEM), was obtained after treatment, especially when the sample was placed in the post-discharge area. More polar functional groups and higher surface free energy, especially the polar component, formed on the PTFE surface were responsible for the modification. For the relatively high purity radicals and rare discharge particles in the post-discharge area, the etching was restrained and the introducing reactions were enhanced, and thus, a better modification occurred there.
机译:使用氩气作为工作气体,在低压等离子体反应器中研究了聚(四氟乙烯)(PTFE)膜表面改性的效果和机制。结果表明,在处理后,在扫描电子显微镜(SEM)方面,较高的亲水性具有很少的降解,特别是当样品置于排出后区域时。在PTFE表面上形成的更多极性官能团和更高的表面自由能,特别是在PTFE表面上形成的极性成分负责修改。对于放电区域中的相对高的纯度基团和稀有放电颗粒,抑制蚀刻,并增强了引入反应,因此发生了更好的修饰。

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