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XPS and water contact angle measurements on aged and corona-treated PP

机译:老化和电晕处理的PP的XPS和水接触角测量

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摘要

Effects of corona treatment and aging on commercially produced corona discharged polypropylene (PP) films were followed via surface sensitive roughness analysis by atomic force microscopy (AFM), water contact angle (WCA), and X-ray photoelectron spectroscopic (XPS) measurements. Roughness analysis by AFM gave similar results for both untreated and corona-treated samples. The measured water contact angle decreased after corona treatment but increased with aging. XPS findings revealed that corona treatment caused an increase in the O-containing species on the surface of the films, but the measured O/C atomic ratio decreased with aging. The angle dependence of the observed XPS O/C atomic ratio further revealed that surface modifications by the corona treatment were buried into the polymer away from the surface as a function of aging. This is attributed to a surface rearrangement of the macromolecules in agreement with the findings of Garbassi et al. on oxygen-plasma-treated polypropylene.
机译:通过原子力显微镜(AFM),水接触角(WCA)和X射线光电子能谱(XPS)测量进行表面敏感性粗糙度分析,跟踪电晕处理和老化对商业生产的电晕放电聚丙烯(PP)薄膜的影响。通过AFM进行的粗糙度分析对于未经处理和经电晕处理的样品给出了相似的结果。电晕处理后,测得的水接触角减小,但随着老化而增加。 XPS的发现表明,电晕处理引起了薄膜表面含O物质的增加,但是随着老化,测得的O / C原子比降低了。所观察到的XPS O / C原子比的角度依赖性进一步表明,通过电晕处理进行的表面改性随老化而被埋入远离表面的聚合物中。这归因于与Garbassi等人的发现一致的大分子的表面重排。在氧等离子体处理的聚丙烯上。

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