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The investigation of polymer surface dynamics modified by plasma using dynamic contact angle method

机译:动态接触角法研究等离子体改性的聚合物表面动力学

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According to the changes of surface dynamic decay rate constant and dynamci contact angle hysteresis in the entire rnage of CF_4(%) in CF_4/CH_4 plasma feed gas, the whole range can be divided into three regions, which are distinguished by their different plasma reaction mechanistic and properties of the polymerized films. The rate constant fo first water immersion stage for polymer films pretreated by CH_4 plasma, and then treated by CF_4/CH_4 plasma is smaller than that of unpretreated films. This demonstrated that an ultrathin layer of plasma polymer of methane as a barrier layer, placed prior to CF_4/CH_4 plasma treatment, can significantly reduced the decay. Arrhenius plots of the decay rate constants on the water immersion temperature showed conspicuous breaks at characteristic surface transition temperature T_s, which represents the change of driving force due to the change in basic properties of water in contact with a surface at the Drost-Hansen temperature of 15deg C. The activation energy for the surface configuration change at above and below T_s is relatively small. The basic nature of the surface configuration change is relatively simple rotational motion without involving large segments or migration of whole macromolkecules.
机译:根据CF_4 / CH_4等离子体供气中CF_4(%)整个表面的表面动力学衰减率常数和动态接触角滞后的变化,可以将整个范围分为三个区域,以不同的等离子体反应来区分聚合膜的机械性能和性能。由CH_4等离子体预处理,然后由CF_4 / CH_4等离子体处理的聚合物薄膜的第一水浸阶段的速率常数小于未预处理的薄膜。这表明,在CF_4 / CH_4等离子体处理之前放置的甲烷等离子聚合物超薄层作为阻挡层,可以显着降低衰减。衰减速率常数在水浸温度下的Arrhenius图在特征表面转变温度T_s处显示出明显的断裂,这表示由于在Drost-Hansen温度下与表面接触的水的基本性质的变化,驱动力的变化。 15℃。在T_s以上和以下的表面结构变化的活化能相对较小。表面构型变化的基本性质是相对简单的旋转运动,而不涉及大分子或整个大分子的迁移。

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