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Xps Characterisation Of Plasma Treated And Zinc Oxide Coated Pet

机译:等离子体处理和氧化锌涂层宠物的Xps表征

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At first, X-ray photoelectron spectroscopy (XPS) analyses of reference and carbon dioxide plasma treated polyethylene terephthalate (PET) were carried out. Significant chemical modifications were outlined in the treated PET surface in comparison with the reference one. The formation of new oxygenated groups was evidenced. These modifications heighten the level of interactions between the polymer substrate and the deposited coating. In a second stage, zinc oxide thin films were elaborated by r.f. magnetron sputtering from a ceramic target and with a reactive gas (mixture of argon-1% oxygen) under optimised conditions on CO_2 plasma treated PET. The interfacial chemistry between the plasma treated PET and the zinc oxide was also studied by XPS. The line shape changes in the high-resolution core level spectra of carbon C1s. oxygen O1s, and zinc (Zn2p3/2, Zn3p), with the progressive deposition of zinc oxide coatings being recorded. The obtained spectra were fitted to mixed Gaussian-Lorentzian components using XPS CASA software. An interaction scheme between the zinc oxide thin layer and its polymer substrate, in the first stage of deposition, was proposed and checked by corroborating the findings of the different XPS spectra and their decompositions. It suggests the formation of Zn-O-C complexes at the interface, which are promoted by an electron transfer from zinc to oxygen in oxygenated species, mainly alcohol groups, generated by the CO_2 plasma treatment of PET.
机译:首先,对参比和二氧化碳等离子体处理过的聚对苯二甲酸乙二醇酯(PET)进行X射线光电子能谱(XPS)分析。与参照物相比,在处理过的PET表面中勾勒出了重要的化学修饰。证实了新的含氧基团的形成。这些修饰提高了聚合物基材与沉积涂层之间相互作用的水平。在第二步中,通过r.f.加工出氧化锌薄膜。在优化的条件下,在CO_2等离子体处理的PET上,从陶瓷靶材和反应气体(氩气(1%氧气的混合物))进行磁控溅射。 XPS还研究了等离子体处理过的PET和氧化锌之间的界面化学。碳C1s的高分辨率核心能级谱中的线形变化。氧气O1s和锌(Zn2p3 / 2,Zn3p),并记录了氧化锌涂层的逐步沉积。使用XPS CASA软件将获得的光谱拟合到混合的高斯-洛伦兹分量。在沉积的第一阶段,提出了氧化锌薄层与其聚合物基底之间的相互作用方案,并通过证实不同XPS光谱及其分解的结果来检验。这表明在界面上形成Zn-O-C络合物,这是由PET的CO_2等离子体处理产生的含氧物质(主要是醇基)中的锌到氧的电子转移促进的。

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