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  • Study of furfural derivatives as a possible green corrosion inhibitor for mild steel in CO2-saturated formation water. Corrosion Science 212 (2023) p. 110907.
  • Evaluation of Flow Accelerated Corrosion in Typical Recovery Boiler Environments of Energy Production Industries. Materials Research 25 (2022) p. e20210520.
  • Electrochemical and surface enhanced Raman spectroscopy study of Guanine as corrosion inhibitor for copper. Corrosion Science 191 (2021) p. 109714.
  • Numerical Analysis of CE Processes in RDE Systems: Diffusion and Electro-hydrodynamic Impedances. Journal of the Electrochemical Society 167 (2020) p. 026502.
  • Hydrogen reaction analysis in aqueous solutions containing H2S/CO2 at different pressures. Corrosion Science 176 (2020) p. 108938.
  • Slow Strain Rate Tests Coupled with Hydrogen Permeation: New Possibilities to assess the role of Hydrogen in Stress Corrosion Cracking Tests Part I: Methodology and Commissioning results. Corrosion Science 152 (2019) p. 45-53.
  • Discussion and Challenges Concerning the Elaboration of a Dissolution Reaction Mechanism. Electrochimica Acta Society 167 (2019) p. 026502.
  • On the 4-methylimidazole behavior at a copper electrode: A view from surface-enhanced Raman scattering. Journal of Raman Spectroscopy (2019) p. 1-7.
  • The influence of heat treatments on the corrosion behavior of nickel-based alloy 718. Journal of Alloys and Compounds 809 (2019) p. 151781.
  • Model for Hydrogen Evolution Reaction in Aqueous Solutions Containing Dissolved CO2 in High Pressures. Journal of the Electrochemical Society 166 (2019) p. C479-C484 .
  • A Surface-Enhanced Raman Scattering and Electrochemical Investigations on the Adsorption of Imidazole: Imidazolium Couple and Its Implications on Copper Corrosion Inhibition Journal of the Electrochemical Society 165 (2018) p. C375-C384.
  • Numerical Analysis of the Steady-State Behavior of CE Processes in Rotating Disk Electrode Systems. Journal of the Electrochemical Society 165 (2018) p. H466-H472.
  • Evaluation of fracture toughness test under hydrogenation condition and microstructural aspects using unloading compliance technique. Engineering Fracture Mechanics 199 (2018) p.619-634.
  • Discussion on Electrochemistry of CO2 corrosion of mild steel: Effect of CO2 on iron dissolution reaction- by A. Kahyarian, B. Brown, S. Nesic, [Corros. Sci. 129 (2017) 146-151]. Corrosion Science 133 (2018) 417-422.
  • New insights on the role of CO2 in the mechanism of carbon steel corrosion, Corrosion Science, 120 (2017) 239-250.
  • Behavior of 9Ni Steel in the Presence of Aqueous Solutions Containing CO2 and H2S. Corrosion 73 (2017) 303-314.
  • Hydrogen Evolution Reaction Evaluation in Aqueous Solutions Containing CO2 at Different Pressures. Journal of the Electrochemical Society 164 (2017) C294-C299.
  • Influence of Hydrogen on Plasticity around the Crack Tip in high strength Steels. Engineering Fracture Mechanics 176 (2017) 116-125
  • A critical insight on the use of external load cells for fatigue tests in pressurized systems, Engineering Fracture Mechanics 181 (2017) 1-6.

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