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首页> 外文期刊>Plasma Science, IEEE Transactions on >Hydrophilic Stability of Plastic Surfaces Treated in Low- and Atmospheric-Pressure Radio-Frequency Plasmas
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Hydrophilic Stability of Plastic Surfaces Treated in Low- and Atmospheric-Pressure Radio-Frequency Plasmas

机译:在低压和常压射频等离子体中处理的塑料表面的亲水稳定性

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摘要

An atmospheric-pressure radio-frequency (RF) corona torch plasma and a low-pressure parallel-plate RF plasma are employed to increase hydrophilicity of polycarbonate and acrylonitrile butadiene styrene surfaces. The contact angle of water for the plastic surfaces is decreased by Ar plasma treatment in any condition, while the surface roughness is decreased, too, unexpectedly. The rate of decrease in contact angle versus treatment time in the atmospheric pressure plasma is about an order of magnitude higher than that in the low-pressure plasma. During postexposure of the plastic surfaces to ambient air, the contact angle is recovered gradually and saturated at a certain value depending on plasma treatment time. A longer plasma treatment time causes less recovery in contact angle. The results indicate that surface roughening as well as surface functionalization is responsible for improving the recovery characteristic and, hence, the hydrophilic stability.
机译:使用大气压射频(RF)电晕炬等离子体和低压平行板RF等离子体可增加聚碳酸酯和丙烯腈丁二烯苯乙烯表面的亲水性。在任何情况下,通过Ar等离子处理,水对塑料表面的接触角都会减小,而表面粗糙度也会出乎意料地减小。大气压等离子体中的接触角相对于处理时间的减小速率比低压等离子体中的减小大约高一个数量级。在塑料表面与环境空气的后接触过程中,接触角会逐渐恢复,并根据等离子处理时间达到一定的饱和值。等离子处理时间越长,接触角的恢复越小。结果表明,表面粗糙化和表面官能化是改善采收特性并因此改善亲水稳定性的原因。

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