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首页> 外文期刊>journal of applied polymer science >Solvent‐ and glow‐discharge‐induced surface wetting and morphological changes of poly(ethylene terephthalate) (PET)
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Solvent‐ and glow‐discharge‐induced surface wetting and morphological changes of poly(ethylene terephthalate) (PET)

机译:溶剂和辉光放电诱导的聚对苯二甲酸乙二醇酯(PET)的表面润湿和形貌变化

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AbstractThe effects of argon glow discharge and selected organic solvents on the surface wettability of poly(ethylene terephthalate) (PET) and on the wettability decay of glow discharged PET films were studied. Glow discharge in argon (30 W/1 min) drastically reduced the initial water contact angle (CA) measurement of PET from 67.0 to 26.2°. The glow‐discharge‐induced wetting, however, decayed during the first 7 days and stabilized at 33.1°. Treatments in dimethyl sulfoxide, dimethyl formamide, pyrdine, and water at 80°C caused some improvement in surface wettability as shown by decreases of water CAs in the range of 53–56°. When the solvent and glow discharge treatments were applied consecutively on PET, additive effects on improving surface wettability were observed. The stabilized water CAs of the solvent‐and‐glow‐discharged films ranged from 25.0 to 32.1° depending upon the solvent type. The solvent treatments prior to glow discharge either reduced the extent of CA decay or the time taken to reach stabilization on PET films. Scanning electron microscopic evaluation showed no difference between the solventtreated and the untreated PET surfaces, but a finely etched surface was observed on the glow discharged PET at a 40,000 magnification and above. The distinctly different surface of the DMSO‐and‐glow‐discharged PET indicated that morphological changes on PET surface were
机译:摘要研究了氩辉放电和精选有机溶剂对聚对苯二甲酸乙二醇酯(PET)表面润湿性和辉光放电PET薄膜润湿衰减的影响。氩气中的辉光放电(30 W/1 min)将PET的初始水接触角(CA)测量值从67.0°大幅降低到26.2°。然而,辉光放电引起的润湿在前 7 天内衰减并稳定在 33.1°。在80°C下用二甲基亚砜、二甲基甲酰胺、吡啶和水处理后,表面润湿性有所改善,如水CA在53-56°范围内的降低所示。当在PET上连续进行溶剂和辉光放电处理时,观察到对改善表面润湿性的累加效应。溶剂和辉光放电薄膜的稳定水CA范围为25.0至32.1°,具体取决于溶剂类型。辉光放电前的溶剂处理既减少了CA衰减的程度,也减少了PET薄膜达到稳定所需的时间。扫描电子显微镜评估显示,溶剂处理的PET表面和未处理的PET表面没有差异,但在40,000倍及以上的放大倍率下,在辉光放电的PET上观察到精细的蚀刻表面。DMSO和辉光放电PET表面明显不同,表明PET表面的形态变化

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