Adsorption of organic peroxides on the surface of amourphous alloys for the drugs immobilization
DOI:
https://doi.org/10.15330/pcss.23.3.517-523Keywords:
amorphous metallic alloys, surface activity, adsorption of oligoperoxides, thin filmsAbstract
It was investigated wetting of surfaces of the amorphous metallic alloys (AMA) based on iron and cobalt with aqueous-ammonium solutions of oligoperoxides based on vinyl acetate, 2-tert-butylperoxy-2-methyl-5-hexen-3-yne and maleic anhydride (OP-1) and based on vinyl acetate, 3-tert-butylperoxy-3-phenylbutylmethacrylate and maleic anhydride (OP-2). The surface tension of thin films of oligoperoxideʼs aqueous-ammonia solutions was determined and were calculated values of the macromolecules adsorption. A higher surface activity of OP-2 was observed in comparison with OP-1. The values of the adhesion work between contact and external metallic surfaces and solutions of oligomers were calculated.
References
G. Grundmeier, W. Schmidt, M. Stratmann, Corrosion protection by organic coatings: electrochemical mechanism and novel methods of investigation, Electrochemica Acta 45(15-16), 2515-2533 (2000); https://doi.org/10.1016/S0013-4686(00)00348-0.
C.K. Tan, D.J. Blackwood, Corrosion protection by multilayered conducting polymer coatings, Corrosion Science 45(3), 545–547 (2003); https://doi.org/10.1016/S0010-938X(02)00144-0.
A. Zaichenko, N. Mitina, M. Kovbuz, I. Artym, S. Voronov, Surface-active metal-coordinated oligoperoxidic radical initiators. I. The interrelation between the microstructure of ditertiary oligoperoxides and their ability to form stable metal complexes, Journal of Polymer Science: Part A: Polymer Chemistry 38, 516-527 (2000); https://doi.org/10.1002/(SICI)1099-0518(20000201)38:3%3C516::AID-POLA18%3E3.0.CO;2-R.
М.М. Lopachak, K.І. Khrushchyk, V.V. Dnistryan, L.М. Boichyshyn, O.V. Reshetnyak, Corrosion Resistance of Co77Si11B12 Amorphous Metal Alloys for the Electrodes of Hydrogen Release from Alkaline Solutions, Materials Science 56(5), 673-677 (2021); https://doi.org/10.1007/s11003-021-00481-x.
L.M. Boichyshyn, Y.О. Kulyk, O.M. Hertsyk, B.Y. Kotur, О.Y. Rudenko, М.S. Nizameev, Corrosion Resistance of Ribbon and Bulk Amorphous Alloys Based on Iron, Materials Science 52(6), 854-860 (2017); https://doi.org/10.1007/s11003-017-0031-9.
O. M. Hertsyk, M. O. Kovbuz, O. A. Ezers’ka, T. H. Pereverzeva, Modification of the surface of soft magnetic amorphous alloys by oligomers for the formation of durable corrosion-resistant coatings, Materials Science 47(3), 401-407 (2011); https://doi.org/10.1007/s11003-011-9409-2.
V.K. Nosenko, Amorphous and nanocrystalline alloys for instrument making and energy efficient technologies, Visnik Nacionalnoi Academii Nauk Ukraini 4, 68-79 (2015); https://doi.org/10.15407/visn2015.04.068.
L. Bednarska, B. Kotur, M. Kovbuz, A. Budniok, E. Ła̧giewka, The structure, morphology and electrochemical impedance study of the passivation layers on the surface of the Co-Fe-Si-B-M amorphous metallic alloys, Journal of Physics: Conference Series 79(1), 012033 (2007); https://doi.org/10.1088/1742-6596/79/1/012033.
M.O. Kovbuz, O.M. Hertsyk, N.E. Mitina, Y.Z. Khimyak, L.M. Bednarska, Polish Journal of Chemistry 82, 93-100 (2008).
O.M. Hertsyk, M.O. Kovbuz, L.M. Bednarska, B.Ya. Kotur, Influence of Thermal Treatment on the Adsorption Ability of Amorphous Alloys, Adsorption, Science & Technology 20(6), 579-587 (2002); https://doi.org/10.1260/026361702321039456.