Abstract
A direct fluorination technique was applied for the surface treatment of PIM-1 films in a liquid phase (perfluorodecalin). The fluorinated samples were analyzed by various instrumental techniques. ATR-IR spectroscopy showed that the fluorination predominantly takes place in methylene- and methyl-groups. Cyano-groups, aromatic hydrogens and the aromatic structure of the PIM-1 repeat unit were shown to be relatively stable at the fluorination conditions. XPS confirmed that the concentration of fluorine, as well as oxygen, in the near surface layer (~1 nm) increases with fluorination time. C1s and O1s surface spectra of the fluorinated PIM-1 samples indicated an appearance of newly-formed C-F and C-O functional groups. Scanning electron microscopy and X-ray energy-dispersive spectroscopy of the fluorinated PIM-1 samples showed an increase of the fluorine concentration at the surface (~0.1–1 μm) with the treatment duration. Analysis of the slices of the PIM-1 films demonstrated a decline of the fluorine content within several microns of the film depth. The decline increased with the fluorination time. A model of fluorine concentration dependence on the film depth and treatment duration was suggested. A change in the specific free surface energy as a result of PIM-1 fluorination was revealed. The fluorination time was shown to affect the surface energy (γSV), providing its shift from a low value (25 mJ∙m−2), corresponding to tetrafluoroethylene, up to a relatively high value, corresponding to a hydrophilic surface.
Funder
Ministry of Science and Higher Education of the Russian Federation
Subject
Polymers and Plastics,General Chemistry
Reference36 articles.
1. Direct fluorination of polymers—From fundamental research to industrial applications;Kharitonov;Prog. Org. Coat.,2008
2. Nazarov, V.G. (2008). Surface Modification of Polymers, Ministry of Education and Science of Russian Federation, Moscow State University of Printing Arts.
3. Dubois M Surface Modification of Polymers Treated by Various Fluorinating Media;Tressaud;Acta Chim. Slov.,2013
4. Belov, N.A., Alentiev, A.Y., Bogdanova, Y.G., Vdovichenko, A.Y., and Pashkevich, D.S. (2020). Direct Fluorination as Method of Improvement of Operational Properties of Polymeric Materials. Polymers, 12.
5. Direct fluorination of poly-2,6-dimethyl-1,4-phenylene oxide in perfluorinated liquid medium;Blinov;J. Fluor. Chem.,2020
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