General properties and comparison of the corrosion inhibition efficiencies of the triazole derivatives for mild steel

Abstract: Mild steel (MS) corrosion is a worldwide issue that greatly affects the industrial and natural environment. To extend the lifespan of appliances, the control of MS corrosion is necessary. To shield MS from corrosion, specifically from acidic conditions, one of the practical and finest approaches is the application of inhibitors. Triazole derivatives are eco-friendly corrosion inhibitors (CIs) having inconsequential toxicities, excellent inhibition efficiencies (IEs) against corrosion of MS, and extremely high cost-effectiveness. This critical review discusses the general effect of temperature, concentration, time after the application of CI, and type of acid on the IE of triazole derivatives. Further, the review provides an adequate amount of information about the features of excellent CIs; a summary of the reported properties of triazole-based inhibitors, CIs in industries, and current requirements of industries; and recommendations and implications for researchers to improve IE. Additionally, the review also illustrates the mechanisms of action and the IEs, which are evaluated from potentiodynamic polarization parameters, in various acidic media and concentrations of triazole inhibitors. By IE correlation with numerous concentrations and acidic conditions, this review is advantageous and helpful for synthetic chemists to expand the diversity and complexity of a class of triazole derivatives by synthesizing new triazole derivatives.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
General properties and comparison of the corrosion inhibition efficiencies of the triazole derivatives for mild steel ; volume:36 ; number:6 ; year:2018 ; pages:507-545 ; extent:39
Corrosion reviews ; 36, Heft 6 (2018), 507-545 (gesamt 39)

Creator
Faisal, Muhammad
Saeed, Aamer
Shahzad, Danish
Abbas, Nadir
Ali Larik, Fayaz
Ali Channar, Pervaiz
Abdul Fattah, Tanzeela
Muhammad Khan, Dost
Aaliya Shehzadi, Syeda

DOI
10.1515/corrrev-2018-0006
URN
urn:nbn:de:101:1-2410301733356.517156751175
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:25 AM CEST

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Associated

  • Faisal, Muhammad
  • Saeed, Aamer
  • Shahzad, Danish
  • Abbas, Nadir
  • Ali Larik, Fayaz
  • Ali Channar, Pervaiz
  • Abdul Fattah, Tanzeela
  • Muhammad Khan, Dost
  • Aaliya Shehzadi, Syeda

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