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The surface oxidation of selected polymers using an atmospheric pressure air dielectric barrier discharge. Part II

机译:使用大气压空气介电势垒放电对所选聚合物进行表面氧化。第二部分

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摘要

In this paper, complementary to Part I published earlier herein, we report and discuss the results of surface treatment, using a dielectric barrier discharge (DBD), on various polymer films, which already contain intrinsically structurally bonded oxygen in their structures prior to treatment. Surface analysis and characterisation of the materials studied were performed using X-ray photoelectron spectroscopy (XPS), contact angle measurement and scanning electron microscopy (SEM) before and following the DBD processing described. The influence of the discharge parameters, i.e. the energy deposited by the discharge at the electrodes, the inter-electrode gap and the treatment time, are related to the changes in the surface characteristics found postprocessing. Our results show that polar functional polymers carrying intrinsically bound oxygen can be further oxidised on short exposures to a random filamentary dielectric barrier discharge of relatively low power running in air at atmospheric pressure. The outermost layer of the surface is modified very rapidly and remarkably uniformly within fractions of a second of DBD exposure. Moreover, there appears to be a limit in the level of oxidation which can be induced by such DBD treatment, i.e. the maximum level attainable is ~45 at.% O. These data thus become complementary to our first series of experiments, as the degree of modification of the surfaces, in terms of oxygen content, seems to depend in the present case both on the "polarity" of the samples prior to treatment and on the respective chemical structure of the polymers.
机译:在本文中,作为本文前面发表的第一部分的补充,我们报告并讨论了使用介电势垒放电(DBD)对各种聚合物薄膜进行表面处理的结果,这些薄膜在处理之前已经在其结构中包含了固有结构键合的氧。在描述的DBD处理之前和之后,使用X射线光电子能谱(XPS),接触角测量和扫描电子显微镜(SEM)进行了所研究材料的表面分析和表征。放电参数的影响,即由放电在电极处沉积的能量,电极间间隙和处理时间与后处理中发现的表面特性的变化有关。我们的结果表明,带有内在结合的氧的极性功能聚合物可在短时间暴露于大气压下在空气中运行的相对低功率的随机丝状介质阻挡放电中被进一步氧化。在DBD曝光的几分之一秒内,表面的最外层被非常迅速且显着地均匀地改性。而且,通过这种DBD处理可以诱导的氧化水平似乎存在极限,即,可达到的最大水平为〜45 at。%O。这些数据因此成为我们第一个实验系列的补充,就氧气含量而言,表面改性的程度在目前看来既取决于处理之前样品的“极性”,又取决于聚合物的相应化学结构。

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