ELECTROCHEMICAL STUDIES OF THE INHIBITING EFFICIENCY OF ANTICORROSION COATINGS
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In this article, the polarization curves of anti-corrosion coatings are studied. Corrosion analysis of bare and coated substrates was performed using a CS-350 potentiostat system connected to corrosion analysis software. Polarization measurements were carried out potentiostatically at room temperature using an Ag/AgCl/Cl- (0.222 V) reference electrode and a platinum electrode. Potentiodynamic measurements were performed in the range from -2000 to 2000 mV vs. Ag/AgCl/Cl at a rate of 5 mV/s. Before the measurements, the electrodes were kept in the working solutions for at least 30 minutes to reach the steady state potential.
Wang G, Yang J (2010) Influences of binder on fire protection and anticorrosion properties of intumescent fire resistive coating for steel structure. Surf Coat Technol 204(8):1186–1192
Posner R, Ozcan O, Grundmeier G (2013) Water and ions at polymer/metal interfaces. In: da Silva LFM, Sato C (eds) Design of adhesive joints under humid conditions. Springer, Hamburg, pp 22–52
Schriver M, Regan W, Gannett WJ et al (2013) Graphene as a long-term metal oxidation barrier: worse than nothing. ACS Nano 7(7):5763–5768
Sharma, A., Sharma, S. Graphene-based polymer coatings for preventing marine corrosion: a review. J Coat Technol Res 20, 413–432 (2023).
Krishnamurthy, A., Gadhamshetty, V., Mukherjee, R. et al. Superiority of Graphene over Polymer Coatings for Prevention of Microbially Induced Corrosion. Sci Rep 5, 13858 (2015).
Hasanov, R., Bilgiç, S. & Gece, G. Experimental and theoretical studies on the corrosion properties of some conducting polymer coatings. J Solid State Electrochem 15, 1063–1070 (2011).
Zhang, L., Wang, W., Wu, H. et al. Corrosion-resistant composite coatings based on a graphene oxide–metal oxide/urushiol formaldehyde polymer system. J Coat Technol Res 18, 1209–1225 (2021).
Nomozov A K, Beknazarov Kh S, Khodjamkulov S Z, Misirov Z Kh. Salsola Oppositifolia acid extract as a green corrosion inhibitor for carbon steel. Indian J Chem Tech. 2023; 30(6): 872-877. https://doi.org/10.56042/ijct.v30i6.6553.
Muratov B.A, Turaev Kh. Kh, Umbarov I.A, Kasimov Sh.A, Nomozov A.K, "Studying of Complexes of Zn(II) and Co(II) with Acyclovir (2-amino-9-((2-hydroxyethoxy)methyl)-1,9- dihydro-6H-purine-6-OH),"Int. J of Eng. Trends and Tech. 2024; 72(1): 202-208. https://doi.org/10.14445/22315381/IJETT-V72I1P120.
Shaymardanova M A, Mirzakulov Kh Ch, Melikulova G, Khodjamkulov S Z, Nomozov A K, Shaymardanova Kh.S. Study of process of obtaining monopotassium phosphate based on monosodium phosphate and potassium chloride. Chemical Problems. 2023; 3 (21): 279-293. https://doi.org/10.32737/2221-8688-2023-3-279-293.
Copyright (c) 2024 Kodirov N.U, Beknazarov Kh.S, Ibragimov B.T.

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