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Low pressure DC-plasma system for the modification udof polymeric membrane surfaces

机译:低压直流等离子系统的改造 ud高分子膜表面

摘要

The main objectives of this work were to develop a lab-scale direct current (DC) glow discharges plasma system for modification of organic and inorganic membranes. Characteristics of plasma system were presented under the discharge of five gases (Ar, N2, air, O2, and CO2). A Langmuir double probe was used for the evaluation of the electron temperature (Te) and electron density (ne) of plasmas. The current and voltage (I-V) characteristic curves were analyzed. Relationships between breakdown voltage (VB) of gases and products of gas pressure and inter-electrode gap (pd) were studied in form of Paschen curves. The results showed that Te of plasma in various gases was in the range of 4-13 eV, while the ne varied between 108 and 109 cm-3. The plasma generated at different gas pressure and applied voltage is in the normal and abnormal modes. Finally, the constructed DC-plasma system was utilized for modification of polymeric membrane surfaces. Treatment time, discharge power and type of gas were varied. The tailoring of membrane surfaces was analyzed through the water contact angle and percent-weight loss (PWL) measurements, DMTA, AFM, XPS and FTIR spectrum. It could be shown that DC-plasma from this system can be used to modify the surface of polymeric membranes.
机译:这项工作的主要目的是开发一种实验室规模的直流(DC)辉光放电等离子体系统,用于改性有机膜和无机膜。在五种气体(Ar,N2,空气,O2和CO2)的排放下呈现了等离子体系统的特性。 Langmuir双探针用于评估等离子体的电子温度(Te)和电子密度(ne)。分析了电流和电压(I-V)特性曲线。以Paschen曲线的形式研究了气体的击穿电压(VB)与气体压力乘积与电极间间隙(pd)之间的关系。结果表明,在各种气体中等离子体的Te处于4-13 eV的范围内,而ne在108和109 cm-3之间变化。在不同气压和施加电压下产生的等离子体处于正常和异常模式。最后,所构建的DC-等离子体系统用于聚合物膜表面的改性。处理时间,放电功率和气体类型各不相同。通过水接触角和失重百分率(PWL)测量,DMTA,AFM,XPS和FTIR光谱分析膜表面的定制。可以证明,该系统的直流等离子体可用于修饰聚合物膜的表面。

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