Anti-corrosion performance of Ocimum basilicum seed extract as environmental friendly inhibitors for mild steel in HCl solution: Evaluations of electrochemical, EDX, DFT and Monte Carlo
暂无分享,去创建一个
M. Taleb | M. Ebn Touhami | N. Arrousse | Seong-Cheol Kim | R. Salim | Y. Fernine | R. Haldhar | F. El Hajjaji
[1] M. Taleb,et al. Ocimum basilicium seeds extract as an environmentally friendly antioxidant and corrosion inhibitor for aluminium alloy 2024 -T3 corrosion in 3 wt% NaCl medium , 2021 .
[2] B. El Ibrahimi,et al. Detailed DFT/MD Simulation, Surface Analysis and Electrochemical Computer Explorations of Aldehyde Derivatives For Mild Steel in 1.0 M HCl , 2021, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[3] M. Ouakki,et al. Imidazole derivatives as efficient and potential class of corrosion inhibitors for metals and alloys in aqueous electrolytes: A review , 2021, Journal of Molecular Liquids.
[4] M. Cherkaoui,et al. A detailed investigation on the corrosion inhibition effect of by newly synthesized Pyran derivative on mild steel in 1.0 M HCl: Experimental, surface morphological (SEM-EDS, DRX& AFM) and computational analysis (DFT & MD simulation) , 2021, Journal of Molecular Liquids.
[5] M. Taleb,et al. Insight into the corrosion inhibition property of two new soluble and non-toxic xanthenbenzoate derivatives , 2021 .
[6] F. Benhiba,et al. Anticorrosive properties of a green and sustainable inhibitor from leaves extract of Cannabis sativa plant: Experimental and theoretical approach , 2021 .
[7] M. Ebn Touhami,et al. Anticorrosion properties of 5,5′-dithiobis-(2-nitrobenzoic acid) and sodium sulfite compounds for aluminum alloy 2024-T3 in saline solution: Electrochemical, characterization and theoretical investigations , 2021 .
[8] S. Kaya,et al. Corrosion inhibition, surface adsorption and computational studies of Momordica charantia extract: a sustainable and green approach , 2021, SN Applied Sciences.
[9] R. Haldhar,et al. Performance of Pfaffia paniculata extract towards corrosion mitigation of low-carbon steel in an acidic environment , 2020, International Journal of Industrial Chemistry.
[10] I. Bahadur,et al. Evaluation of Gloriosa superba seeds extract as corrosion inhibition for low carbon steel in sulfuric acidic medium: A combined experimental and computational studies , 2020 .
[11] M. Yadav,et al. Investigation on corrosion inhibition and adsorption mechanism of triazine-thiourea derivatives at mild steel / HCl solution interface: Electrochemical, XPS, DFT and Monte Carlo simulation approach , 2020 .
[12] A. Kokalj. On the alleged importance of the molecular electron-donating ability and the HOMO–LUMO gap in corrosion inhibition studies , 2020 .
[13] D. S. Chauhan,et al. Electrochemical and theoretical insights on the adsorption and corrosion inhibition of novel pyridinium-derived ionic liquids for mild steel in 1 M HCl , 2020 .
[14] D. S. Chauhan,et al. Experimental and theoretical insights on the adsorption and inhibition mechanism of (2E)-2-(acetylamino)-3-(4-nitrophenyl) prop-2-enoic acid and 4-nitrobenzaldehyde on mild steel corrosion , 2020, Journal of Chemical Sciences.
[15] Nisha Bhardwaj,et al. Experimental and Theoretical Evaluation of Acacia catechu Extract as a Natural, Economical and Effective Corrosion Inhibitor for Mild Steel in an Acidic Environment , 2020, Journal of Bio- and Tribo-Corrosion.
[16] R. Haldhar,et al. Corrosion Resistance and Surface Protective Performance of Waste Material of Eucalyptus globulus for Low Carbon Steel , 2020, Journal of Bio- and Tribo-Corrosion.
[17] I. Ali,et al. Inhibition performances of spirocyclopropane derivatives for mild steel protection in HCl , 2020 .
[18] Yaqiong Zhang,et al. Oils from Fruit, Spice, and Herb Seeds , 2020 .
[19] A. H. Nour,et al. Physicochemical Properties and Fatty Acid Composition of Ocimum basilicum L. Seed Oil , 2020 .
[20] S. Issaadi,et al. Heterocyclic Schiff bases as corrosion inhibitors for carbon steel in 1 M HCl solution: hydrodynamic and synergetic effect , 2020, Journal of Dispersion Science and Technology.
[21] Nisha Bhardwaj,et al. Surface Adsorption and Corrosion Resistance Performance of Acacia concinna Pod Extract: An Efficient Inhibitor for Mild Steel in Acidic Environment , 2020, Arabian Journal for Science and Engineering.
[22] B. Ramezanzadeh,et al. Highly effective mild steel corrosion inhibition in 1 M HCl solution by novel green aqueous Mustard seed extract: Experimental, electronic-scale DFT and atomic-scale MC/MD explorations , 2019, Journal of Molecular Liquids.
[23] K. M. Deen,et al. Corrosion inhibition of mild steel in 1 M HCl by sweet melon peel extract , 2019, Journal of King Saud University - Science.
[24] Wenpo Li,et al. Insights into the inhibition mechanism of three 5-phenyltetrazole derivatives for copper corrosion in sulfuric acid medium via experimental and DFT methods , 2019, Journal of the Taiwan Institute of Chemical Engineers.
[25] A. Shockravi,et al. Synthesis and potential applications of some thiazoles as corrosion inhibitor of copper in 1 M HCl: Experimental and theoretical studies , 2019, Progress in Organic Coatings.
[26] N. Bouzeghaia,et al. Mild steel corrosion inhibition by Parsley (Petroselium Sativum) extract in acidic media , 2019, Egyptian Journal of Petroleum.
[27] Seung-Hyun Kim,et al. Inhibition behavior of Tragia involucrata L. phenolic compounds against acidic medium corrosion in low carbon steel surface , 2019, Chinese Journal of Chemical Engineering.
[28] Nisha Bhardwaj,et al. Extraction and experimental studies of Citrus aurantifolia as an economical and green corrosion inhibitor for mild steel in acidic media , 2019, Journal of Adhesion Science and Technology.
[29] H. Oudda,et al. Corrosion Inhibition of Ordinary Steel in 5.0 M HCl Medium by Benzimidazole Derivatives: Electrochemical, UV–Visible Spectrometry, and DFT Calculations , 2019, Journal of Bio- and Tribo-Corrosion.
[30] B. Ramezanzadeh,et al. Utilizing Lemon Balm extract as an effective green corrosion inhibitor for mild steel in 1M HCl solution: A detailed experimental, molecular dynamics, Monte Carlo and quantum mechanics study , 2019, Journal of the Taiwan Institute of Chemical Engineers.
[31] A. Saxena,et al. Investigation of corrosion inhibition effect and adsorption activities of Cuscuta reflexa extract for mild steel in 0.5 M H2SO4. , 2018, Bioelectrochemistry.
[32] A. Saxena,et al. Experimental and theoretical studies of Ficus religiosa as green corrosion inhibitor for mild steel in 0.5 M H 2 SO 4 solution , 2018, Sustainable Chemistry and Pharmacy.
[33] A. Kaur,et al. Corrosion resistance of mild steel in 0.5 M H2SO4 solution by plant extract of Alkana tinctoria: Experimental and theoretical studies , 2018, The European Physical Journal Plus.
[34] I. Ali,et al. Understanding corrosion inhibition of mild steel in acid medium by new benzonitriles: Insights from experimental and computational studies , 2018, Journal of Molecular Liquids.
[35] Y. Qiang,et al. A combined experimental and theoretical study of the inhibition effect of three disulfide-based flavouring agents for copper corrosion in 0.5 M sulfuric acid. , 2018, Journal of colloid and interface science.
[36] A. Saxena,et al. Armoracia rusticana as sustainable and eco-friendly corrosion inhibitor for mild steel in 0.5M sulphuric acid: Experimental and theoretical investigations , 2018, Journal of Environmental Chemical Engineering.
[37] Xuefeng Zou,et al. Designing and fabricating of single and double alkyl-chain indazole derivatives self-assembled monolayer for corrosion inhibition of copper , 2018, Corrosion Science.
[38] B. Hammouti,et al. Inhibitory effect of Acacia hamulosa methanolic extract on the corrosion of mild steel in 1 M hydrochloric acid , 2018, Bulletin of the Chemical Society of Ethiopia.
[39] M. Siniti,et al. Red Algae Halopitys Incurvus Extract as a Green Corrosion Inhibitor of Carbon Steel in Hydrochloric Acid , 2018, Journal of Bio- and Tribo-Corrosion.
[40] Priyanka Singh,et al. Valeriana wallichii root extract as a green & sustainable corrosion inhibitor for mild steel in acidic environments: experimental and theoretical study , 2018 .
[41] A. Saxena,et al. Myristica fragrans extract as an eco-friendly corrosion inhibitor for mild steel in 0.5 M H2SO4 solution , 2018 .
[42] Ashish Kumar,et al. Low cost aqueous extract of Pisum sativum peels for inhibition of mild steel corrosion , 2018 .
[43] C. Jama,et al. Evaluation of alkaloids extract of Retama monosperma (L.) Boiss. stems as a green corrosion inhibitor for carbon steel in pickling acidic medium by means of gravimetric, AC impedance and surface studies , 2018 .
[44] D. Yıldırım,et al. Synthesis and inhibitory effect of N,N'-bis(1-phenylethanol)ethylenediamine against steel corrosion in HCl Media , 2017 .
[45] A. Joseph,et al. Controlling the Rate of Dissolution of Mild Steel in Sulfuric Acid Through the Adsorption and Inhibition Characteristics of (4-(4-Hydroxybenzylideneamino)-4H-1,2,4-Triazole-3,5-diyl)dimethanol (HATD) , 2017, Journal of Bio- and Tribo-Corrosion.
[46] A. Boligon,et al. Evaluation of basil extract ( Ocimum basilicum L.) on oxidative, anti-genotoxic and anti-inflammatory effects in human leukocytes cell cultures exposed to challenging agents , 2017 .
[47] J. Abraham,et al. ANTIMICROBIAL, ANTIOXIDANT AND ANTICANCER SCREENING OF OCIMUM BASILICUM SEEDS , 2016 .
[48] M. J. Kadhim,et al. Evaluation of anti-bacterial activity and bioactive chemical analysis of Ocimum basilicum using Fourier transform infrared (FT-IR) and gas chromatography-mass spectrometry (GC-MS) techniques , 2016 .
[49] M. Jokar,et al. Electrochemical and surface characterizations of morus alba pendula leaves extract (MAPLE) as a green corrosion inhibitor for steel in 1 M HCl , 2016 .
[50] E. Ebenso,et al. Experimental and theoretical studies on the corrosion inhibition of mild steel by some sulphonamides in aqueous HCl , 2015 .
[51] R. Prakash,et al. Musa paradisica peel extract as green corrosion inhibitor for mild steel in HCl solution , 2015 .
[52] B. Ramezanzadeh,et al. Application of Electrochemical Noise to Investigate Corrosion Inhibition Properties of Some Azole Compounds on Aluminum in 0.25 M HCl , 2014 .
[53] B. Ramezanzadeh,et al. Analysis of electrochemical noise (ECN) data in time and frequency domain for comparison corrosion inhibition of some azole compounds on Cu in 1.0 M H2SO4 solution , 2014 .
[54] M. Khan,et al. Synthesis characterization and corrosion inhibition efficiency of N-C2 {(2E)-2-[4-(dimethylamino) benzylidene] hydrazinyl} 2-oxo ethyl benzamide on mild steel , 2010 .
[55] A. S. Yaro,et al. The Effect of Temperature and Acid Concentration on Corrosion of Low Carbon Steel in Hydrochloric Acid Media , 2009 .
[56] A. Al-sabagh,et al. Corrosion inhibition of mild steel in 1 M sulfuric acid solution using anionic surfactant , 2004 .
[57] S. Mertens,et al. Asymmetrical Schiff bases as inhibitors of mild steel corrosion in sulphuric acid media , 2003 .
[58] T. Longvah,et al. Nutritional and short term toxicological evaluation of Perilla seed oil , 2000 .
[59] M. Traisnel,et al. Inhibitor effects of triazole derivatives on corrosion of mild steel in acidic media , 2000 .
[60] Bernhard Wessling,et al. Corrosion protection of mild steel by coatings containing polyaniline , 1995 .
[61] F. Growcock,et al. Time‐Resolved Impedance Spectroscopy of Mild Steel in Concentrated Hydrochloric Acid , 1989 .