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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Simultaneous and long-lasting hydrophilization of inner and outer wall surfaces of polytetrafluoroethylene tubes by transferring atmospheric pressure plasmas
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Simultaneous and long-lasting hydrophilization of inner and outer wall surfaces of polytetrafluoroethylene tubes by transferring atmospheric pressure plasmas

机译:通过转移大气压等离子体使聚四氟乙烯管的内壁和外壁表面同时且持久地亲水化

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摘要

Plasma hydrophilization is a general method to increase the surface free energy of materials. However, only a few works about plasma modification focus on the hydrophilization of tube inner and outer walls. In this paper, we realize simultaneous and long-lasting plasma hydrophilization on the inner and outer walls of polytetrafluoroethylene (PTFE) tubes by atmospheric pressure plasmas (APPs). Specifically, an Ar atmospheric pressure plasma jet (APPJ) is used to modify the PTFE tube's outer wall and meanwhile to induce transferred He APP inside the PTFE tube to modify its inner wall surface. The optical emission spectrum (OES) shows that the plasmas contain many chemically active species, which are known as enablers for various applications. Water contact angle (WCA) measurements, x-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM) are used to characterize the plasma hydrophilization. Results demonstrate that the wettability of the tube walls are well improved due to the replacement of the surface fluorine by oxygen and the change of surface roughness. The obtained hydrophilicity decreases slowly during more than 180 d aging, indicating a long-lasting hydrophilization. The results presented here clearly demonstrate the great potential of transferring APPs for surface modification of the tube's inner and outer walls simultaneously.
机译:等离子体亲水化是增加材料表面自由能的通用方法。然而,关于等离子体改性的只有少数著作集中在管内壁和外壁的亲水化上。在本文中,我们通过大气压等离子体(APPs)在聚四氟乙烯(PTFE)管的内壁和外壁上实现了同时且持久的等离子体亲水化。具体而言,使用Ar大气压等离子射流(APPJ)来修饰PTFE管的外壁,同时在PTFE管内诱导转移的He APP来修饰其内壁表面。光学发射光谱(OES)表明,等离子体包含许多化学活性物质,这些物质被称为各种应用的促成剂。水接触角(WCA)测量,X射线光电子能谱(XPS)和原子力显微镜(AFM)用于表征等离子体亲水化。结果表明,由于用氧气代替了表面氟并改变了表面粗糙度,使管壁的润湿性得到了很好的改善。在超过180 d的老化过程中,获得的亲水性会缓慢降低,这表明亲水作用将持续很长时间。此处呈现的结果清楚地表明了同时转移APP进行管子内外壁表面改性的巨大潜力。

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