首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mechanisms of Oxygen Plasma Nanotexturing of Organic Polymer Surfaces: From Stable Super Hydrophilic to Super Hydrophobic Surfaces
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Mechanisms of Oxygen Plasma Nanotexturing of Organic Polymer Surfaces: From Stable Super Hydrophilic to Super Hydrophobic Surfaces

机译:有机聚合物表面的氧等离子体纳米织构机理:从稳定的超亲水表面到超疏水表面

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摘要

Plasma processing is used to fabricate super hydrophilic or super hydrophobic polymeric surfaces by means of O-2 plasma etching of two organic polymers, namely, poly(methyl methacrylate) (PMMA) and poly(ether ether ketone) (PEEK); a C4F8 plasma deposition follows O-2 plasma etching, if surface hydrophobization is desired. We demonstrate high aspect ratio pillars with height ranging from 16 nm to several micrometers depending oil the processing time, and contact angle (CA) close to 0 degrees after O-2-Plasma treatment or CA of 153 degrees (with CA hysteresis lower than 5 degrees) after fluorocarbon deposition. Super hydrophobic surfaces are robust and stable in time; in addition, aging of super hydrophilic surfaces is significantly retarded because of the beneficial effect of the nanotextured topography. The mechanisms responsible for the plasma-induced PMMA and PEEK surface nanotexturing are unveiled through intelligent experiments involving intentional modification of the reactor wall material and X-ray photoelectron spectroscopy, which is also used to study the surface chemical modification in the plasma. We prove that control of plasma nanotexture call be achieved by carefully choosing the reactor wall material.
机译:等离子体处理用于通过O-2等离子体刻蚀两种有机聚合物,即聚甲基丙烯酸甲酯(PMMA)和聚醚醚酮(PEEK)来制造超亲水或超疏水聚合物表面。如果需要表面疏水化,则在O-2等离子体蚀刻之后进行C4F8等离子体沉积。我们演示了高纵横比的柱子,高度从16 nm到几微米不等,视油的加工时间而定,O-2-等离子处理后的接触角(CA)接近0度,或153度的CA(CA滞后小于5)度)。超疏水表面及时结实稳定;另外,由于纳米纹理形貌的有益效果,超亲水性表面的老化被显着延迟。通过涉及实验堆壁材料的有意修饰和X射线光电子能谱的智能实验,揭示了等离子体诱导的PMMA和PEEK表面纳米结构的机理,该研究还用于研究等离子体中的表面化学修饰。我们证明通过仔细选择反应器壁材料可以实现对等离子体纳米纹理的控制。

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