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Contact Properties of Polytetrafluoroethylene Films Modified in Nonthermal Plasma of Atmospheric-Pressure Argon Glow Discharge

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Abstract

It has been shown that plasma treatment of the surface of a polytetrafluoroethylene film in nonthermal plasma of atmospheric-pressure glow discharge makes it possible to obtain low values of the contact angle, to achieve high uniformity of the properties of the treated surface, and to significantly increase the work of adhesion. The treatment with nonthermal atmospheric-pressure glow-discharge plasma leads to the formation of an electret state stable over time on the polytetrafluoroethylene film surface.

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REFERENCES

  1. Sabbatovskii, K.G., Dutschk, V., Nitschke, M., et al., Colloid J., 2004, vol. 66, p. 239.

    Article  Google Scholar 

  2. Cho, C.-C., Wallace, R.M., and Files-Sesler, L.A., J. Electron. Mater., 1994, vol. 23, p. 827.

    Article  CAS  Google Scholar 

  3. Takahashi, T., Hirano, Y., Takasawa, Y., et al., Radiat. Phys. Chem., 2011, vol. 80, p. 253.

    Article  CAS  Google Scholar 

  4. Salapare, H.S., III, Blantocas, G.Q., Noguera, V.R., et al., Appl. Surf. Sci., 2008, vol. 255, p. 2951.

    Article  CAS  Google Scholar 

  5. Morra, M., Occhiello, E., and Garbassi, F., Langmuir, 1989, p. 5872.

  6. Salapare, H.S., III, Blantocas, G.Q., Noguera, V.R., and Ramos, H.J., Contact Angle, Wettability and Adhesion, Mittal, K.L. Ed., Leiden: VSP, 2009, vol. 6, p. 207.

    Google Scholar 

  7. Salapare, H.S., III, Blantocas, G.Q., Rivera, W.L., et al., Plasma Fusion Res., 2011, vol. 62, p. 406043.

    Google Scholar 

  8. Piskarev, M.S., Gil’man, A.B., Shmakova, N.A., et al., High Energy Chem., 2008, vol. 42, no. 2, p. 137.

    Article  CAS  Google Scholar 

  9. Baldanov, B.B. and Ranzhurov, Ts.V., High Energy Chem., 2016, vol. 50, no. 1, p. 60.

    Article  CAS  Google Scholar 

  10. Yan, Y.Y., Gao, N., and Bartholott, W., Adv. Colloid Interface Sci., 2011, vol. 169, p. 80.

    Article  CAS  Google Scholar 

  11. Lafuma, A. and Quéré, D., Nat. Mater., 2003, vol. 2, p. 457.

    Article  CAS  Google Scholar 

  12. Darmanin, T., Guittard, F., Amigoni, S., et al., Soft Matter, 2011, vol. 7, p. 1053.

    Article  CAS  Google Scholar 

  13. Bellanger, H., Darmanin, T., and Guittard, F., Langmuir, 2012, vol. 28, p. 186.

    Article  CAS  Google Scholar 

  14. Sheen, Y.C., Huang, Y.C., Liao, C.S., et al., J. Polym. Sci., Part B: Polym. Phys., 2008, vol. 46, p. 1984.

    Article  CAS  Google Scholar 

  15. Sarkar, D.K. and Saleema, N., Surf. Coat. Technol., 2010, vol. 204, p. 2483.

    Article  CAS  Google Scholar 

  16. Zhang, X., Shi, F., Niu, J., et al., J. Mater. Chem., 2008, vol. 18, p. 621.

    Article  CAS  Google Scholar 

  17. Amigoni, S., Taffin de Givenchy, E., Dufay, M., et al, Langmuir, 2009, vol. 25, p. 11073.

    Article  CAS  Google Scholar 

  18. Ryan, M.E. and Badyal, J.P.S., Macromolecules, 1995, vol. 28, p. 1377.

    Article  CAS  Google Scholar 

  19. Yablokov, M.Yu., Kechek’yan, A.S., Bazhenov, S.L., et al., Khim. Vys. Energ., 2008, vol. 42, no. 2, p. 169.

    Google Scholar 

  20. Celia, E., Taffin de Givenchy, E., Amigoni, S., et al., Soft Matter, 2011, vol. 7, p. 10057.

    Article  CAS  Google Scholar 

  21. Inagaki, N., Narushima, K., Lim, S.K., et al., Nucl. Instrum. Methods Phys. Res., 2003, vol. 208, p. 277.

    Article  CAS  Google Scholar 

  22. Chen, I.-J. and Lindner, E., Langmuir, 2007, vol. 23, p. 3118.

    Article  CAS  Google Scholar 

  23. Clark, D.T. and Dilks, A., J. Polym, Sci., Part A: Polym. Chem., 1978, vol. 16, p. 911.

    CAS  Google Scholar 

  24. Shahidzadeh-Ahmadi, N., Arefi-Khonsari, F., and Amouroux, J., J. Mater. Chem., 1995, vol. 5, p. 229.

    Article  CAS  Google Scholar 

  25. Gol’dshtein, D.V., Gil’man, A.B., and Potapov, V.K., Khim. Vys. Energ., 1990, vol. 24, no. 3, p. 188.

    Google Scholar 

  26. Drachev, A.I., Gil’man, A.B., and Kuznetsov, A.A., Khim. Vys. Energ., 2003, vol. 37, no. 5, p. 342.

    Google Scholar 

  27. Semenov, A.P., Baldanov, B.B., and Ranzhurov, Ts.V., Instrum. Exp. Tech., 2020, vol. 63, no. 2, p. 284.

    Article  Google Scholar 

  28. Rasband, W.S., ImageJ, 1997–2014, Bethesda, MD: U.S. National Institutes of Health. http://imagej. nih.gov/ij/.

  29. Akishev, Yu.S., Grushin, M.E., Monich, A.E., et al., High Energy Chem., 2003, vol. 37, no. 5, p. 286.

    Article  CAS  Google Scholar 

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Correspondence to B. B. Baldanov.

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Translated by S. Zatonsky

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Baldanov, B.B. Contact Properties of Polytetrafluoroethylene Films Modified in Nonthermal Plasma of Atmospheric-Pressure Argon Glow Discharge. High Energy Chem 56, 280–283 (2022). https://doi.org/10.1134/S0018143922040026

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  • DOI: https://doi.org/10.1134/S0018143922040026

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