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Electrochemical investigation on the corrosion inhibition of mild steel by Quinazoline Schiff base compounds in hydrochloric acid solution

  • Ghulamullah Khan
  • , Wan Jeffrey Basirun
  • , Salim Newaz Kazi
  • , Pervaiz Ahmed
  • , Ladan Magaji
  • , Syed Muzamil Ahmed
  • , Ghulam Mustafa Khan
  • , Muhammad Abdur Rehman
  • Universiti Malaya
  • Balochistan University of Information Technology, Engineering & Management Sciences BUITEMS
  • Dept Phys
  • University of Balochistan

Research output: Contribution to journalArticlepeer-review

197 Scopus citations

Abstract

The inhibitory effect of two Schiff bases 3-(5-methoxy-2-hydroxybenzylideneamino)-2-(-5-methoxy-2-hydroxyphenyl)-2,3-dihydroquinazoline-4(1H)-one (MMDQ), and 3-(5-nitro-2-hydroxybenzylidenea mino)-2(5-nitro-2-hydroxyphenyl)-2,3-dihydroquinazoline-4(1H)-one (NNDQ) on the corrosion of mild steel in 1 M hydrochloric acid were studied using mass loss, potentiodynamic polarization technique and electrochemical impedance spectroscopy measurements at ambient temperature. The investigation results indicate that the Schiff Bases compounds with an average efficiency of 92% at 1.0 mM of additive concentration have fairly effective inhibiting properties for mild steel in hydrochloric acid, and acts as mixed type inhibitor character. The inhibition efficiencies measured by all measurements show that the inhibition efficiencies increase with increase in inhibitor concentration. This reveals that the inhibitive mechanism of inhibitors were primarily due to adsorption on mild steel surface, and follow Langmuir adsorption isotherm. The temperature effect on the inhibition process in 1 M HCl with the addition of investigated Schiff bases was studied at a temperature range of 30-60 degrees C, and the activation parameters (Ea, Delta H and Delta S) were calculated to elaborate the corrosion mechanism. The differences in efficiency for two investigated inhibitors are associated with their chemical structures. (C) 2017 Elsevier Inc. All rights reserved.
Original languageEnglish
Pages (from-to)134-145
Number of pages12
JournalJournal of Colloid and Interface Science
Volume502
DOIs
StatePublished - 15 Sep 2017
Externally publishedYes

Keywords

  • Corrosion inhibition
  • Eis
  • Kinetic parameters
  • Mild steel
  • Sem
  • Schiff bases

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