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Surface modification of PVA thin film by nonthermal atmospheric pressure plasma for antifogging property

机译:非热常压等离子体对PVA薄膜的表面改性以提高防雾性能

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In this work, a polyvinyl alcohol (PVA) thin film was modified by exposure to a dielectric barrier discharge argon plasma. The plasma was generated by a sinusoidal power supply with discharge voltage of 4.75 kV (rms), and frequency of 30 kHz at duty cycle 6.13%. The effect of the plasma on the PVA thin film was investigated by analyzing the contact angle, scanning electron microscopy, atomic force microscopy, X-ray photoelectron spectroscopy, and UV–visible spectroscopy. After the plasma treatment, the contact angle was found to be decrease from 29.6 ± 0.4° to 14.5 ± 0.2°, which implied that the surface property had changed to a hydrophilic state caused by an increase in the surface roughness and introduction of oxygen, including a polar carbonyl group. It was found that the plasma-treated hydrophilic PVA thin film exhibited excellent antifogging and highly transparent characteristics, making it an appropriate material for food packaging and green houses.
机译:在这项工作中,聚乙烯醇(PVA)薄膜通过暴露于电介质阻挡层放电氩等离子体中进行了改性。等离子体由正弦电源产​​生,放电电压为4.75 kV(rms),频率为30 kHz,占空比为6.13%。通过分析接触角,扫描电子显微镜,原子力显微镜,X射线光电子能谱和紫外可见光谱,研究了等离子体对PVA薄膜的影响。在等离子处理后,发现接触角从29.6±0.4°减小到14.5±0.2°,这表明由于表面粗糙度的增加和氧气的引入,表面性能已变为亲水状态。极性羰基。发现经等离子体处理的亲水性PVA薄膜表现出优异的防雾性和高度透明的特性,使其成为用于食品包装和温室的合适材料。

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