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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Comparison of surface modification of polypropylene film by filamentary DBD at atmospheric pressure and homogeneous DBD at medium pressure in air
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Comparison of surface modification of polypropylene film by filamentary DBD at atmospheric pressure and homogeneous DBD at medium pressure in air

机译:大气中丝状DBD和中压中均相DBD对聚丙烯薄膜表面改性的比较

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摘要

Non-equilibrium plasmas generated by a dielectric barrier discharge (DBD) are of great interest in material surface processing because of their convenience, effectiveness and low cost. In this paper, polypropylene (PP) films are modified using a non-equilibrium plasma generated by a DBD in air in homogeneous mode and in filamentary mode. The filamentary DBD is generated in ambient air, and the homogeneous DBD is generated at medium pressure with an operating pressure value of 3 kPa. The characteristics of homogeneous DBD are studied and compared with those of filamentary DBD by measuring their electrical discharge parameters and observing their light emission phenomena, and the surface properties of the PP films before and after the treatments are studied using contact angle and surface energy measurement, x-ray photoelectron spectroscopy and scanning electron microscopy. It is found that the homogeneous DBD is even and stable in the whole gas gap, which differs from the commonly filamentary DBD. The plasma treatments modify the PP surface in both morphology and composition. The PP films modified in both treatments show a remarkable decrease in the water contact angle and a remarkable increase in surface energy due to the introduction of oxygen-containing groups on the surface and the etching of the surface. The homogeneous DBD is more effective in PP surface modification than the filamentary DBD as it can make the contact angle decrease to a lower level by introducing more oxygen-containing groups. This effect could be explained by the evenly distributed plasma at a homogeneous DBD than at a filamentary DBD, and by the more efficient introduction of atomic oxygen to the PP surface in the case of homogeneous DBD.
机译:由于介电势垒放电(DBD)产生的非平衡等离子体的便利性,有效性和低成本,它们在材料表面处理中引起了极大的兴趣。在本文中,聚丙烯(PP)膜是使用DBD在空气中以均相模式和丝状模式生成的非平衡等离子体改性的。丝状DBD在环境空气中生成,均匀DBD在中等压力下以3 kPa的工作压力值生成。研究了均匀DBD的特性,并通过测量其放电参数并观察其发光现象,将其与丝状DBD进行了比较,并通过接触角和表面能测量研究了处理前后PP膜的表面性能, X射线光电子能谱和扫描电子显微镜。发现均匀的DBD在整个气隙中是均匀且稳定的,这不同于通常的丝状DBD。等离子体处理可改变PP表面的形态和组成。在两种处理中改性的PP膜由于在表面上引入含氧基团和表面蚀刻而显示出水接触角的显着减小和表面能的显着增加。均相DBD在PP表面改性方面比丝状DBD更有效,因为它可以通过引入更多的含氧基团使接触角降低到较低的水平。可以通过在均匀DBD处比在丝状DBD处均匀分布等离子体,以及在均匀DBD情况下更有效地将原子氧引入PP表面来解释这种效果。

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