Applied Sciences (Jul 2019)

Corrosion of α-Brass in Solutions Containing Chloride Ions and 3-Mercaptoalkyl-5-amino-1<em>H</em>-1,2,4-triazoles

  • Oleg Kozaderov,
  • Khidmet Shikhaliev,
  • Chetti Prabhakar,
  • Anuj Tripathi,
  • Dmitry Shevtsov,
  • Alexei Kruzhilin,
  • Ekaterina Komarova,
  • Andrei Potapov,
  • Ilya Zartsyn,
  • Yuri Kuznetsov

DOI
https://doi.org/10.3390/app9142821
Journal volume & issue
Vol. 9, no. 14
p. 2821

Abstract

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The protective effect of 3-mercaptoalkyl derivatives of 5-amino-1H-1,2,4-triazole against corrosion of α-brass in a chloride media was studied using polarization curves, electrochemical impedance spectroscopy, and full-scale corrosion testing. The brass electrode remains passive up to the activation potential, which is much higher than in solutions without organic additives, and it increases with the concentration of the inhibitor. The protection degree of all the studied inhibitors reaches its maximum of over 99% in solutions with the concentration of the inhibitor Cinh ≥ 0.10 mM. The protective effect increases with the length of the alkyl chain. All the studied derivatives are effective against atmospheric corrosion of α-brass. A protective film is formed on the brass surface, and it most probably includes oxides as well as complex compounds of zinc and copper with the molecules of the inhibitors. The impedance spectroscopy demonstrated that the presence of the inhibitor results in a decrease in the double-layer capacitance and an increase in the polarization resistance, which proves that the protective film actually forms on the brass surface. The quantum chemical analysis of the optimized molecular structures demonstrates that all the studied inhibitors should have a similar protective effect, which agrees with the experimental results.

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