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Zhurnal Tekhnicheskoi Fiziki, 2022 Volume 92, Issue 7, Pages 913–923 (Mi jtf7377)

IV International Conference with the School of Young Scientists ''Physics - life science''
Nanomaterials and nanodiagnostics in biology and medicine

Nanostructured compositions based on polymeric paintwork materials and environmentally safe biocides

T. E. Sukhanovaa, A. I. Kosovskikhbc, M. È. Vylegzhaninad, Yu. P. Belove, N. V. Lebedeva

a S.V. Lebedev Institute of Synthetic Rubber, St. Petersburg, Russia
b Saint-Petersburg State University of Industrial Technology and Design, HSTE, St.-Petersburg, Russia
c D. I. Mendeleev Institute for Metrology, St. Petersburg, Russia
d Institute of Macromolecular Compounds, Russian Academy of Sciences, St. Petersburg, Russia
e JSC NPO "Iodobrom" Saki, Crimea, Russia

Abstract: Composite coatings containing iodine- and bromine-containing compounds as biocides have been obtained on the basis of industrial paintwork materials. A number of composite coatings containing biocides – Nitroxynil, Ioxynil and 2,5-dibrom-4-nitrophenol, have been analyzed using a modified technique for assessing biological activity and toxicity for determining the survival rate of Artemia salina crustaceans. It was found that the compositions on the basis of paintwork materials with Nitroxynil show the greatest bioactivity. AFM study of the surface morphology of the developed coatings showed that the introduction of biocides leads to coating structuring at the nanolevel, with the strength of nanostructured coatings on impact decreases by 2–3 times, however, these values are 2 times higher than those of the reference sample - an industrial copper-containing antifouling paint. The obtained results can be used for further development of environmentally safe protective and antifouling polymer coatings and paintwork materials.

Keywords: protective and antifouling paintwork materials, iodine- and bromine-containing biocides, atomic-force microscopy, morphology of composite coatings, surface roughness, impact strength.

Received: 13.01.2022
Revised: 31.03.2022
Accepted: 31.03.2022

DOI: 10.21883/JTF.2022.07.52644.10-22



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