Biocidal and Corrosion Properties of Composite Electrochemical Coatings Based on Tin–Nickel Alloy

Cover Page

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

Composite electrochemical coatings based on a tin–nickel alloy with a composite of the “SiO2 core–TiO2 shell” type have been obtained. Corrosion properties of coatings were studied in 3% sodium chloride solution. Biocidal properties of coatings with respect to Escherichia coli ATCC 8739 and Staphylococcus aureus ATCC 6538 strains were studied. It was found that, to impart biocidal properties to the surface, the minimum concentration of composite in the electrolyte should be 4 g/L.

About the authors

A. V. Pyanko

Belarusian State Technological University, 220006, Minsk, Belarus

Email: hanna.pianka@mail.ru
Беларусь, 220006, Минск, ул. Свердлова, 13а

O. A. Alisienok

Belarusian State Technological University, 220006, Minsk, Belarus

Email: hanna.pianka@mail.ru
Беларусь, 220006, Минск, ул. Свердлова, 13а

A. V. Pospelov

Belarusian State Technological University, 220006, Minsk, Belarus

Email: hanna.pianka@mail.ru
Беларусь, 220006, Минск, ул. Свердлова, 13а

E. F. Chernyavskaya

Belarusian State Technological University, 220006, Minsk, Belarus

Email: hanna.pianka@mail.ru
Беларусь, 220006, Минск, ул. Свердлова, 13а

A. A. Chernik

Belarusian State Technological University, 220006, Minsk, Belarus

Author for correspondence.
Email: hanna.pianka@mail.ru
Беларусь, 220006, Минск, ул. Свердлова, 13а

References

  1. Fujishima A., Rao T.N., Tryk D.A. // J. Photochem. Photobiol., C. 2000. V. 1. № 1. P. 1.
  2. Moma J., Baloyi J. Photocatalysts – applications and attributes modified titanium dioxide for photocatalytic applications // London: IntechOpen, 2019. P. 156.
  3. Kharitonov D.S., Kasach A.A., Sergievich D.S. et al. // Ultrason. Sonochem. 2021. V. 75. P. 105593.
  4. Kasach A.A., Kharitonov D.S., Wrzesińska A. et al. // Prot. Met. Phys. Chem. Surf. 2020. V. 56. P. 385.
  5. Vlasa A., Varvara S., Pop A. et al. // J. Appl. Electrochem. 2010. V. 40. № 8. P. 1519.
  6. Camargoa M.K., Tudelab I., Schmidta U. et al. // Electrochim. Acta. 2016. V. 198. P. 287.
  7. Katamipour A., Farzam M., Danaee I. et al. // Surf. Coat. Technol. 2014. V. 254. P. 358.
  8. Mozhgan S., Mahdi M., Seyed M.E. // Colloids Surf. A. 2019. V. 573. P. 196.
  9. Abdel Hamid Z., Refai M., El-kilani R.M. et al. // J. Mater. Sci. 2021. V. 56. № 25. P. 14096.
  10. Thiemig D., Bund A. // Surf. Coat. Technol. 2008. V. 202. P. 2976.
  11. Huang S., Hu Y., Pan W. // Surf. Coat. Technol. 2011. V. 205. P. 3872.
  12. Rosolymou E., Spanou S., Zanella C. et al. // Coatings. 2020. V. 10. P. 775.
  13. Pyanko A.V., Sergievich D.S., Chernik A.A. et al. // Prot. Met. Phys. Chem. Surf. 2021. V. 57. № 1. P. 88.
  14. Kuznetsov B.V., Vorobyova T.N., Glibin V.P. // Met. Finish. 2013. V. 111. P. 38.
  15. Vorobyova T.N., Kudaka A.A. // Trans. Inst. Met. Finish. 2022. V. 100. № 1. P. 36.
  16. Шеханов Р.Ф. // Изв. вузов. Химия и хим. технология. 2017. Т. 60. № 10. С. 75.
  17. Subramanian B., Mohan S., Jayakrishnan S. // J. Appl. Electrochem. 2007. V. 37. P. 219.
  18. Jiménez H., Gil L., Staia M.H. et al. // Surf. Coat. Technol. 2008. V. 202. P. 2072.
  19. Murashkevich A.N., Lavitskaya A.S., Alisienok O.A. et al. // Inorg. Chem. 2009. V. 45. № 10. P. 1146.
  20. Пянко А.В., Алисиенок О.А., Кубрак П.Б. и др. // Электрохимия. 2022. Т. 58. № 5. С. 234.

Supplementary files

Supplementary Files
Action
1. JATS XML
2.

Download (311KB)
3.

Download (169KB)
4.

Download (90KB)
5.

Download (148KB)
6.

Download (237KB)
7.

Download (56KB)
8.

Download (21KB)
9.

Download (1MB)

Copyright (c) 2023 А.В. Пянко, О.А. Алисиенок, А.В. Поспелов, Е.Ф. Чернявская, А.А. Черник