Synergistic effect of KI and urea on the corrosion protection of mild steel in 0.5 M H2SO4: Experimental and computational insights
暂无分享,去创建一个
[1] M. Khaled,et al. Experimental and computational chemical studies on the corrosion inhibition of new pyrimidinone derivatives for copper in nitric acid , 2022, Scientific Reports.
[2] N. Negm,et al. Corrosion Inhibition of Carbon Steel in Hydrochloric Acid Solution Using Ethoxylated Nonionic Surfactants Based on Schiff Base: Electrochemical and Computational Investigations , 2021, ACS omega.
[3] A. Alamri. Experimental and Theoretical Insights into the Synergistic Effect of Iodide Ions and 1-Acetyl-3-Thiosemicarbazide on the Corrosion Protection of C1018 Carbon Steel in 1 M HCl , 2020, Materials.
[4] Mostafa H. Sliem,et al. Corrosion Inhibition of Mild Steel in Sulfuric Acid by a Newly Synthesized Schiff Base: An Electrochemical, DFT, and Monte Carlo Simulation Study , 2020, Electroanalysis.
[5] Y. Qiang,et al. Corrosion retardation effect of a green cauliflower extract on copper in H2SO4 solution: Electrochemical and theoretical explorations , 2020 .
[6] P. Nam,et al. Pivotal Role of Heteroatoms in Improving the Corrosion Inhibition Ability of Thiourea Derivatives , 2020, ACS omega.
[7] D. Lavanya,et al. Corrosion Inhibitive Effect of Novel Eco Friendly Corrosion Inhibitors for Mild Steel in 0.5 M HCl—A Comparative Study , 2020 .
[8] C. Len,et al. Furfural Analogs as Sustainable Corrosion Inhibitors—Predictive Efficiency Using DFT and Monte Carlo Simulations on the Cu(111), Fe(110), Al(111) and Sn(111) Surfaces in Acid Media , 2020, Sustainability.
[9] Lijuan Yuan,et al. Two novel chitosan derivatives as high efficient eco-friendly inhibitors for the corrosion of mild steel in acidic solution , 2020 .
[10] E. Kowsari,et al. Imidazolium-derived polymeric ionic liquid as a green inhibitor for corrosion inhibition of mild steel in 1.0 M HCl: Experimental and computational study , 2020 .
[11] K. Qiao. Synergistic inhibition effect of Diantipyrylmethane and Potassium thiocyanate on mild steel corrosion in 1 M HCl solution , 2019, International Journal of Electrochemical Science.
[12] H. Nady,et al. Adsorption characteristics and inhibition effect of two Schiff base compounds on corrosion of mild steel in 0.5 M HCl solution: experimental, DFT studies, and Monte Carlo simulation , 2019, RSC advances.
[13] A. Al‐Saadi,et al. Mechanistic studies of the influence of halogen substituents on the corrosion inhibitive efficiency of selected imidazole molecules: A synergistic computational and experimental approach , 2019, Applied Surface Science.
[14] L. Leke,et al. Corrosion studies of mild steel in sulphuric acid medium by acidimetric method , 2019, International Journal of Corrosion and Scale Inhibition.
[15] H. Serrar,et al. Molecular Dynamics, Monte-Carlo Simulations and Atomic Force Microscopy to Study the Interfacial Adsorption Behaviour of Some Triazepine Carboxylate Compounds as Corrosion Inhibitors in Acid Medium , 2018, Journal of Bio- and Tribo-Corrosion.
[16] B. Jahdaly. Inhibition Efficiency of Some Amino Acids in the Presence of Vanillin for the Corrosion of Mild Steel in HCl Solution , 2018 .
[17] E. Ebenso,et al. Molecular dynamics and Monte Carlo simulations as powerful tools for study of interfacial adsorption behavior of corrosion inhibitors in aqueous phase: A review , 2018, Journal of Molecular Liquids.
[18] E. Ebenso,et al. Substituents effect on corrosion inhibition performance of organic compounds in aggressive ionic solutions: A review , 2018 .
[19] A. Sorour,et al. 8-Hydroxyquinoline as an alternative green and sustainable acidizing oilfield corrosion inhibitor , 2017 .
[20] E. Kowsari,et al. In situ synthesis, electrochemical and quantum chemical analysis of an amino acid-derived ionic liquid inhibitor for corrosion protection of mild steel in 1M HCl solution , 2016 .
[21] Priyanka Singh,et al. Nicotinonitriles as green corrosion inhibitors for mild steel in hydrochloric acid: Electrochemical, computational and surface morphological studies , 2016 .
[22] M. Deyab. Electrochemical investigations on pitting corrosion inhibition of mild steel by provitamin B5 in circulating cooling water , 2016 .
[23] G. Karthik,et al. Studies on the inhibition of mild steel corrosion in hydrochloric acid solution by atenolol drug , 2016 .
[24] Priyanka Singh,et al. Thiopyrimidine derivatives as new and effective corrosion inhibitors for mild steel in hydrochloric acid: Electrochemical and quantum chemical studies , 2016 .
[25] M. Boobalan,et al. Interactions and Inhibition Effect of Urea-Derived Mannich Bases on a Mild Steel Surface in HCl , 2015 .
[26] I. Obot,et al. Surface protection of mild steel using benzimidazole derivatives: experimental and theoretical approach , 2015 .
[27] I. Obot,et al. Enhanced corrosion inhibition effect of tannic acid in the presence of gallic acid at mild steel/HCl acid solution interface , 2015 .
[28] M. A. Quraishi,et al. Experimental and computational studies of naphthyridine derivatives as corrosion inhibitor for N80 steel in 15% hydrochloric acid , 2015 .
[29] Tarek Zayed,et al. A condition assessment model for oil and gas pipelines using integrated simulation and analytic network process , 2015 .
[30] H. M. El-Lateef. Experimental and computational investigation on the corrosion inhibition characteristics of mild steel by some novel synthesized imines in hydrochloric acid solutions , 2015 .
[31] E. Barmatov,et al. Efficiency of film-forming corrosion inhibitors in strong hydrochloric acid under laminar and turbulent flow conditions , 2015 .
[32] Dan M. Frangopol,et al. Reinforced concrete bridge deck reliability model incorporating temporal and spatial variations of probabilistic corrosion rate sensor data , 2008, Reliab. Eng. Syst. Saf..
[33] M. Ghorbani,et al. Corrosion Inhibition of Mild Steel with Tolyltriazole , 2021, Materials Research.
[34] H. M. Elabbasy,et al. Study the effect of expired tenoxicam on the inhibition of carbon steel corrosion in a solution of hydrochloric acid , 2021 .
[35] N. Shetty,et al. Electrochemical corrosion of low carbon steel in a hydrochloric acid medium , 2016 .
[36] L. S. Kozlova,et al. Corrosion inhibitors (review) , 2015 .
[37] Takriff,et al. Theoretical and Experimental Studies on the Corrosion Inhibition Potentials of 2-((6-Methyl-2-Ketoquinolin-3-yl)Methylene) Hydrazinecarbothioamide for Mild Steel in 1 M HCl , 2022 .