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Analysis of the surface chemistry of oxidized polyethylene: comparison of XPS and ToF-SIMS

机译:氧化聚乙烯的表面化学分析:XPS和ToF-SIMS的比较

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摘要

A series of low-density polyethylene (LDPE) surfaces, chemically modified using a number of oxidative techniques employed for adhesion enhancement (pretreatments), have been studied by time-of-flight (ToF) SIMS and XPS. The methods consisted of corona discharge, flame, electrochemical, chromic acid, acid dichromate and acid permanganate treatment. All except flame treatment were performed under mild and fairly severe conditions to yield a range of surface chemistries. The XPS analysis, using high energy resolution and a refined approach to C 1s curve-fitting, provided some new insights into the quantitative assessment of the type and concentration of functional groups. Both positive and negative ion ToF-SIMS spectra were obtained at high mass resolution. The oxygen-containing fragments were identified by accurate mass analysis and subjected to a detailed comparison with the XPS results. No convincing relative intensity correlations could be identified that would allow particular secondary ion fragments to be associated strongly with particular functional groups (in this multi-functional surface situation). Inorganic residues resulting from wet chemical treatments were also investigated and here the two techniques were found to be more complementary. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 29]
机译:已通过飞行时间(ToF)SIMS和XPS研究了一系列低密度聚乙烯(LDPE)表面,这些表面使用了许多用于增强粘合力的氧化技术进行化学修饰(预处理)。该方法包括电晕放电,火焰,电化学,铬酸,重铬酸酸和高锰酸酸处理。除火焰处理外,所有其他处理均在温和且相当恶劣的条件下进行,以产生一系列的表面化学物质。 XPS分析使用高能量分辨率和完善的C 1s曲线拟合方法,为官能团类型和浓度的定量评估提供了一些新见识。正离子和负离子ToF-SIMS光谱均以高质量分辨率获得。通过精确的质量分析鉴定出含氧片段,并与XPS结果进行详细比较。无法确定令人信服的相对强度相关性,该相关性不会使特定的次级离子片段与特定的官能团(在这种多功能表面情况下)牢固结合。还研究了湿化学处理产生的无机残留物,发现这两种技术具有更好的互补性。版权所有(C)2003 John Wiley Sons,Ltd. [参考:29]

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