大气压空气中重复脉冲低温等离子体的聚四氟乙烯表面能提高研究
Improvement of Polytetrafluoroethylene Surface Energy by Repetitive Pulse Non-thermal Plasma Treatment in Atmospheric Air
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摘要: 本文报道了在大气压空气中, 一种具有纳秒级上升沿重复脉冲介质阻挡放电产生的低温等离子用于聚四氟乙烯表面能提高的相关研究。实验过程中计算了介质阻挡放电的放电功率、峰值电流、电流密度以及电子能量等电气参数, 并研究了不同施加电压和处理时间条件下聚四氟乙烯薄膜表面的等离子处理效果。结果表明, 在经过等离子体处理后聚四氟乙烯薄膜表面能能够提高到40mJ/m2以上。表面粗糙度观测以及表面X射线光电子能谱分析表明, 在等离子体处理过程中, 聚四氟乙烯样本表面发生了导致其表面能显著提高的化学刻蚀和极性基团注入过程。由于与50Hz交流介质阻放电相比, 本文研究的重复脉冲介质阻挡放电具有较大的峰值放电功率、较低的平均放电功率、较大的微放电电流密度以及较高能量的自由电子, 在相同施加峰值电压及处理时间条件下, 由重复脉冲介质阻挡放电产生的低温等离子体对于聚四氟乙烯表面能的改性处理具有更为显著的作用, 因此, 在大气压空气中, 基于重复脉冲低温等离子体处理的聚合物表面能提高方法是可行的。Abstract: Improvement of polytetrafluoroethylene surface energy by non-thermal plasma treatment is presented, using a nanosecond-positive-edge repetitive pulsed dielectric barrier discharge generator in atmospheric air. The electrical parameters including discharging power, peak and density of micro-discharge current were calculated, and the electron energy was estimated. Surface treatment experiments of polytetrafluoroethylene films were conducted for both different applied voltages and different treating durations. Results show that the surface energy of polytetrafluoroethylene film could be improved to 40 mJ/m2 or more by plasma treatment. Surface roughness measurement and surface X-ray photoelectron spectroscopy analysis indicate that there are chemical etching and implantation of polar oxygen groups in the sample surface treating process, resulting in the improvement of the sample surface energy. Compared with an ac source of 50 Hz, the dielectric barrier discharges generated by a repetitive pulsed source could provide higher peak power, lower mean power, larger micro-discharge current density and higher electron energy. Therefore, with the same applied peak voltage and treating duration, the improvement of polytetrafluoroethylene surface energy using repetitive pulsed plasma is more effective, and the plasma treatment process based on repetitive pulsed dielectric barrier discharges in air is thus feasible and applicable.
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