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http://dx.doi.org/10.14773/cst.2018.17.3.123

Fabrication of Hydrophobic Surface by Controlling Micro/Nano Structures Using Ion Beam Method  

Kim, Dong-Hyeon (Department of Green Energy Engineering, Uiduk University)
Lee, Dong-Hoon (Department of Green Energy Engineering, Uiduk University)
Publication Information
Corrosion Science and Technology / v.17, no.3, 2018 , pp. 123-128 More about this Journal
Abstract
The fabrication of a controlled surface is of great interest because it can be applied to various engineering facilities due to the various properties of the surface, such as self-cleaning, anti-bio-fouling, anti-icing, anti-corrosion, and anti-sticking. Controlled surfaces with micro/nano structures were fabricated using an ion beam focused onto a polypropylene (PP) surface with a fluoridation process. We developed a facile method of fabricating hydrophobic surfaces through ion beam treatment with argon and oxygen ions. The fabrication of low surface energy materials can replace the current expensive and complex manufacturing process. The contact angles (CAs) of the sample surface were $106^{\circ}$ and $108^{\circ}$ degrees using argon and oxygen ions, respectively. X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared (FT-IR) spectroscopy were used to determine the chemical composition of the surface. The morphology change of the surfaces was observed by scanning electron microscopy (SEM). The change of the surface morphology using the ion beam was shown to be very effective and provide enhanced optical properties. It is therefore expected that the prepared surface with wear and corrosion resistance might have a considerable potential in large scale industrial applications.
Keywords
Ion beam irradiation; Surface morphology; Hydrophobic; Contact angle;
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