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Surface oxidation and degradation of polyethylene in a mixed argon-oxygen plasma

机译:混合氩氧等离子体中聚乙烯的表面氧化和降解

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Changes in surface chemical composition and the rates of formation of gaseous degradation products under the action of a mixed argon-oxygen plasma on polyethylene (PE) were studied using multiple attentuated total internal reflection (MATIR) IR spectroscopy and mass spectrometry. It was found that the dilution of a gas mixture with argon decreased the rate of degradation of the material at argon contents higher than 30%. It was demonstrated that absorbance at the absorption bands of the main oxygen-containing groups in a PE film remained unchanged over an argon concentration range from 0 to 90%. Conceivable mechanisms of processes occurring in gas and solid phases, which allowed us to describe the phenomena observed, are discussed.
机译:使用多重衰减全内反射(MATIR)红外光谱和质谱技术研究了在聚乙烯(PE)上的混合氩氧等离子体作用下表面化学成分的变化和气态降解产物的形成速率。已经发现,用氩气稀释气体混合物降低了在氩气含量高于30%时材料的降解速率。已经证明,在氩气浓度为0至90%的范围内,PE膜中主要含氧基团的吸收带处的吸收率保持不变。讨论了气相和固相过程的可能机理,这些机理使我们能够描述观察到的现象。

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