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Surface modification of polystyrene with atomic oxygen radical anions-dissolved solution
Authors:Lian Wang  Peitao Zhao  Masayoshi Sadakata
Institution:a Department of Chemical Physics, University of Science and Technology of China, Hefei, Anhui 230026, PR China
b Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Science, Hefei, Anhui, PR China
c Oxy Japan Corporation, 7# Floor, Miya Building, 4-3-4, Kojimachi, Chiyoda-ku, Tokyo 102-0083, Japan
d Department of Environmental Chemical Engineering, Kogakuin University, 2665-1, Nakano-machi Hachioji-shi, Tokyo 192-0015, Japan
Abstract:A novel approach to surface modification of polystyrene (PS) polymer with atomic oxygen radical anions-dissolved solution (named as O water) has been investigated. The O water, generated by bubbling of the O (atomic oxygen radical anion) flux into the deionized water, was characterized by UV-absorption spectroscopy and electron paramagnetic resonance (EPR) spectroscopy. The O water treatments caused an obvious increase of the surface hydrophilicity, surface energy, surface roughness and also caused an alteration of the surface chemical composition for PS surfaces, which were indicated by the variety of contact angle and material characterization by atomic force microscope (AFM) imaging, field emission scanning electron microscopy (FESEM), X-ray photoelectron spectroscopy (XPS), and attenuated total-reflection Fourier transform infrared (ATR-FTIR) measurements. Particularly, it was found that some hydrophilic groups such as hydroxyl (OH) and carbonyl (Cdouble bond; length as m-dashO) groups were introduced onto the polystyrene surfaces via the O water treatment, leading to the increases of surface hydrophilicity and surface energy. The active oxygen species would react with the aromatic ring molecules on the PS surfaces and decompose the aromatic compounds to produce hydrophilic hydroxyl and carbonyl compounds. In addition, the O water is also considered as a “clean solution” without adding any toxic chemicals and it is easy to be handled at room temperature. Present method may suit to the surface modification of polymers and other heat-sensitive materials potentially.
Keywords:Polystyrene  O&minus   water  Surface modification  Hydrophilicity
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