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Optical Emission Spectroscopy and Contact Angle Study of Plasma Cleaning of Titanium Alloy Surfaces: Argon Plasma

机译:钛合金表面等离子体清洗的光发射光谱与接触角研究:氩等离子

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Plasma cleaning is common in the preparation of titanium medical devices. In this study, we examine the use of continuous in situ measurements with optical emission spectroscopy (OES) during plasma cleaning and wet contact angle as a tool to assess titanium implant cleanliness. Plasma cleaning was performed in argon plasma at 66.7 Pa in a commercially available radio-frequency (RF) power plasma system using 25 or 100 W of power. During cleaning, the intensities of OES lines at 3 86 and 418 nm, as related to surface contaminants, decreased over time and reached a baseline level in ~1 h. However, the water contact angle (WCA) decreased more rapidly, reaching <10 degrees in 3-5 sec and further decreased to the limit of detection of ~1 ± 1 degree in 20 min using 25 W plasma and in 1 min using 100 W plasma. The OES data indicate that plasma cleaning starts with rapid removal of contaminants from pronounced regions that are better exposed to the plasma and is followed by prolonged cleaning related to the removal of contaminants from less accessible regions. The delayed rise in WCA demonstrates a limitation in using that technique to assess cleanliness and shows how OES is a useful tool to better understand and control plasma cleaning of titanium surfaces.
机译:等离子清洗在钛医疗器械的制备过程中很常见。在这项研究中,我们研究了在等离子清洗和湿接触角期间使用光学发射光谱(OES)连续原位测量作为评估钛植入物清洁度的工具。在商用射频(RF)功率等离子体系统中,使用25或100 W功率,在66.7 Pa的氩等离子体中进行等离子体清洗。在清洗过程中,与表面污染物相关的OES谱线在386和418 nm处的强度随着时间的推移而降低,并在~1 h内达到基线水平。然而,水接触角(WCA)下降得更快,在3-5秒内达到<10°,在使用25 W等离子体的20 min内和使用100 W等离子体的1 min内进一步降低到~1±1°的检测极限。OES数据表明,等离子体清洗始于快速清除暴露于等离子体的明显区域的污染物,然后是与清除不易接近区域的污染物有关的长时间清洗。WCA的延迟上升表明了使用该技术评估清洁度的局限性,并表明OES如何成为更好地理解和控制钛表面等离子清洗的有用工具。

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