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Activation of polycarbonate (PC) surfaces by atmospheric pressure plasma in ambient air

机译:通过环境空气中的大气压等离子体激活聚碳酸酯(PC)表面

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摘要

This paper presents the study of the ambient air atmospheric pressure plasma (APP) treatment of polycarbonate (PC) surfaces to improve the wettability. The APP was generated by dielectric barrier discharge of coplanar electrode arrangement: a Diffuse Coplanar Surface Barrier Discharge (DCSBD), and gliding arc APC 500. The changes in wettability of the PC surfaces were characterized by water contact angle measurement, hysteresis analysis of the water contact angle and surface free energy. We found that both plasma sources led to considerable decrease of water contact angle in first second of the treatments. Surface free energy analysis explained, that the decrease of the water contact angle was related to higher polar components of the surface. The modification of the PC surfaces was further evaluated by X-ray photoelectron spectroscopy that showed that both plasma sources led to increase in concentration of polar functional groups on the PC surface. The main difference between DCSBD and APC plasmas was in the surface morphology which observed by atomic force microscopy (AFM).
机译:本文介绍了聚碳酸酯(PC)表面的环境空气大气压等离子体(APP)处理,以改善润湿性。该应用程序是通过共面电极装置的介电阻挡排放产生的应用:漫射共面表面屏障放电(DCSBD)和滑动弧APC 500.通过水接触角测量,水的滞后分析表征了PC表面的润湿性的变化接触角和表面自由能。我们发现,两种等离子体源导致在治疗中的第一次水接触角度下降相当大的降低。表面自由能量分析说明,水接触角的降低与表面的较高极性组分有关。通过X射线光电子能谱进一步评估了PC表面的改变,所述X射线光电子能谱显示,所述等离子体源的源极源导致PC表面上极性官能团的浓度增加。 DCSBD和APC等离子体之间的主要区别在于由原子力显微镜(AFM)观察的表面形态。

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