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Nano-structuring of PTFE surface by plasma treatment, etching, and sputtering with gold

机译:通过金等离子处理,蚀刻和溅射对PTFE表面进行纳米结构化

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Properties of pristine, plasma modified, and etched (by water and methanol) polytetrafluoroethylene (PTFE) were studied. Gold nanolayers sputtered on this modified PTFE have been also investigated. Contact angle, measured by goniometry, was studied as a function of plasma exposure and post-exposure aging times. Degradation of polymer chains was examined by etching of plasma modified PTFE in water or methanol. The amount of ablated and etched layer was measured by gravimetry. In the next step the pristine, plasma modified, and etched PTFE was sputtered with gold. Changes in surface morphology were observed using atomic force microscopy. Chemical structure of modified polymers was characterized by X-ray photoelectron spectroscopy (XPS). Surface chemistry of the samples was investigated by electrokinetic analysis. Sheet resistance of the gold layers was measured by two-point technique. The contact angle of the plasma modified PTFE decreases with increasing exposure time. The PTFE amount, ablated by the plasma treatment, increases with the plasma exposure time. XPS measurements proved that during the plasma treatment the PTFE macromolecular chains are degraded and oxidized and new –C–O–C–, –C=O, and –O–C=O groups are created in modified surface layer. Surface of the plasma modified PTFE is weakly soluble in methanol and intensively soluble in water. Zeta potential and XPS shown dramatic changes in PTFE surface chemistry after the plasma exposure, water etching, and gold deposition. When continuous gold layer is formed a rapid decrease of the sheet resistance of the gold layer is observed.
机译:研究了原始的,经等离子体改性的以及经水和甲醇蚀刻(聚四氟乙烯)的性能。还研究了溅射在这种改性PTFE上的金纳米层。研究了通过测角法测得的接触角与等离子暴露和暴露后老化时间的关系。通过在水或甲醇中蚀刻等离子改性的PTFE来检查聚合物链的降解情况。通过重量分析法测量烧蚀层的量。在下一步中,将原始的,经等离子体改性和蚀刻的PTFE溅射成金。使用原子力显微镜观察表面形态的变化。改性聚合物的化学结构通过X射线光电子能谱(XPS)表征。通过电动分析研究样品的表面化学。通过两点技术测量金层的薄层电阻。等离子体改性PTFE的接触角随暴露时间的增加而减小。通过等离子体处理烧蚀的PTFE量随等离子体暴露时间而增加。 XPS测量证明,在等离子体处理过程中,PTFE大分子链被降解和氧化,并且在改性表面层中产生了新的–OC–OC –,– C = O和–OC–C = O基团。等离子体改性PTFE的表面微溶于甲醇,而难溶于水。在等离子体暴露,水蚀刻和金沉积之后,Zeta电位和XPS显示PTFE表面化学的巨大变化。当形成连续的金层时,观察到金层的薄层电阻迅速减小。

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