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Study of Modified Area of Polymer Samples Exposed to a He Atmospheric Pressure Plasma Jet Using Different Treatment Conditions

机译:不同处理条件下暴露于大气压等离子射流的聚合物样品改性面积的研究

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摘要

In the last decade atmospheric pressure plasma jets (APPJs) have been routinely employed for surface processing of polymers due to their capability of generating very reactive chemistry at near-ambient temperature conditions. Usually, the plasma jet modification effect spans over a limited area (typically a few cm²), therefore, for industrial applications, where treatment of large and irregular surfaces is needed, jet and/or sample manipulations are required. More specifically, for treating hollow objects, like pipes and containers, the plasma jet must be introduced inside of them. In this case, a normal jet incidence to treated surface is difficult if not impossible to maintain. In this paper, a plasma jet produced at the end of a long flexible plastic tube was used to treat polyethylene terephthalate (PET) samples with different incidence angles and using different process parameters. Decreasing the angle formed between the plasma plume and the substrate leads to increase in the modified area as detected by surface wettability analysis. The same trend was confirmed by the distribution of reactive oxygen species (ROS), expanding on starch-iodine-agar plates, where a greater area was covered when the APPJ was tilted. Additionally, UV-VUV irradiation profiles obtained from the plasma jet spreading on the surface confirms such behavior.
机译:在过去的十年中,大气压等离子体射流(APPJ)已常规用于聚合物的表面处理,因为它们具有在接近环境温度的条件下产生非常活泼化学反应的能力。通常,等离子流的改性效果跨越有限的区域(通常为几平方厘米),因此,对于需要处理大型和不规则表面的工业应用,需要进行喷射和/或样品处理。更具体地说,为了处理空心物体,例如管道和容器,必须将等离子流引入它们的内部。在这种情况下,即使不是不可能维持,也很难使正常射流入射到被处理表面上。在本文中,在长的柔性塑料管的末端产生的等离子体射流用于处理具有不同入射角和使用不同工艺参数的聚对苯二甲酸乙二酯(PET)样品。通过表面润湿性分析检测到,减小等离子体羽流与基底之间形成的角度会导致改性面积的增加。通过在淀粉-碘-琼脂平板上扩展的活性氧种类(ROS)的分布也证实了相同的趋势,当APPJ倾斜时,该区域会覆盖更大的面积。另外,从等离子射流散布在表面上获得的UV-VUV辐照曲线证实了这种行为。

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