首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Analysis of microscopic modifications and macroscopic surface properties of polystyrene thin films treated under d.c. pulsed discharge conditions
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Analysis of microscopic modifications and macroscopic surface properties of polystyrene thin films treated under d.c. pulsed discharge conditions

机译:在直流下处理的聚苯乙烯薄膜的微观改性和宏观表面性能分析脉冲放电条件

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摘要

Using a d.c. pulsed plasma for the polymer surface treatment allows the attainment of macroscopic modifications of the surface, such as an important increase in wettability. At the same time microscopic variations of the surface structure are mainly linked to low-depth chemical modifications, even if very weak roughness changes appear. This technique thus presents two major interests: the low power consumption compared with other techniques such as radiofrequency or microwave plasmas makes it economical; and very significant treatment (macroscopic) is realized under soft conditions without degradation of the polymer.The results of macroscopic and microscopic studies on polystyrene surfaces may allow a macroscopic interpretation to be made of the interaction between the polymer and the d.c. pulsed plasma. Treatment is divided into two temporal stages: cleaning and functionalization. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:使用直流电用于聚合物表面处理的脉冲等离子体可以实现表面的宏观改性,例如可湿性的显着提高。同时,即使出现非常微弱的粗糙度变化,表面结构的微观变化也主要与低深度化学改性有关。因此,该技术具有两个主要优点:与其他技术(例如射频或微波等离子体)相比,其低功耗使其非常经济;对聚苯乙烯表面进行宏观和微观研究的结果可能允许对聚合物与直流电之间的相互作用进行宏观解释。脉冲等离子体。治疗分为两个时间阶段:清洁和功能化。版权所有(c)2005 John Wiley&Sons,Ltd.

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