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首页> 外文期刊>Journal of Molecular Liquids >Evaluation of some amino benzoic acid and 4-aminoantipyrine derived Schiff bases as corrosion inhibitors for mild steel in acidic medium: Synthesis, experimental and computational studies
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Evaluation of some amino benzoic acid and 4-aminoantipyrine derived Schiff bases as corrosion inhibitors for mild steel in acidic medium: Synthesis, experimental and computational studies

机译:一些氨基苯甲酸和4-氨基酰亚胺衍生席夫碱作为酸性介质中低碳钢的腐蚀抑制剂的评价:合成,实验和计算研究

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The corrosion inhibition of steel in 1 M HCl in the presence of four synthesized Schiff bases: 3-[(3-Hydroxy-4-methoxy-benzylidene)-amino]-benzoic acid (HMAMB), 3-[(2-Hydroxy-naphthalen-1-yl methylene)-amino]benzoic acid (HNCAMB), 343-(4-Methoxy-phenyl)-allylideneamino 1-benzoic acid (TMCAMB) and 4-[3-(4-Methoxy-phenyl)-al lyl ide neamino]-1,5-ci methyl-2-phe ny 1,2-d ihyd ro-pyrazol-3-one (TMCATP) was studied by potentiodynamic polarization (PDP), electrochemical impedance spectroscopy (EIS), surface analyses and computational studies. The inhibition efficiency of HMAMB, HNCAMB, TMCAMB and TMCATP obtained at the optimum inhibitor concentration (1.0 mM) from polarization measurement were 87.3%, 89.1%, 96.5% and 97.0% respectively. The values of inhibition efficiencies obtained via the electrochemical analyses for the four inhibitors were comparable. The data from polarization measurement implies the compounds inhibited as mixed-type inhibiting molecules in the tested media but mostly minimized the cathodic reaction. The data obtained experimentally fitted well into Langmuir adsorption isotherm with R-2 values and slopes dose to unity. The values of Gibbs free energy of adsorption ranged from -33.96 to -37.62 kJ mol(-1), suggesting that the molecules adsorbed spontaneously to the surface of the metal by interchange of physical and chemical adsorption mechanisms. The energy dispersive X-ray (EDX) spectra results displayed a decrease in the percentage of oxygen on the surface of the mild steel and scanning electron microscopy (SEM) micrograph also indicated a minimal damage of the metal surface in solutions containing the Schiff bases when likened to the solution without the inhibitors. The results of DFT calculations showed that the molecules had high tendencies in interacting with the steel surface. The values of energy gap (eV) obtained were 4.09, 3.74, 3.69 and 3.58 while the estimated adsorption energy obtained from molecular dynamic simulation studies were - 654.2, -760.8, -741.3 and - 951.9 kJ mol(-1) for HMAMB, HNCAMB, TMCAMB and TMCATP, respectively. (C) 2020 Published by Elsevier B.V.
机译:在四个合成的Schiff碱存在下1M HCl中钢的腐蚀抑制:3 - [(3-羟基-4-甲氧基 - 苄基) - 亚硝酸(Hmamb),3 - [(2-羟基 - 萘-1-基亚甲基) - 氨基]苯甲酸(HNCAMB),343-(4-甲氧基 - 苯基) - 咪啶1-苯甲酸(TMCAMB)和4- [3-(4-甲氧基 - 苯基)-al lyl IDE Neamino] -1,5-CI甲基-2-PHE NY 1,2-D IHYD RO-Pyrozol-3-One(TMCATP)由电位显微偏振(PDP),电化学阻抗光谱(EIS),表面分析和表面分析计算研究。 Hmamp,HNCAMB,TMCAMB和TMCATP在最佳抑制剂浓度(1.0mm)中获得的抑制效率分别为87.3%,89.1%,96.5%和97.0%。通过四种抑制剂的电化学分析获得的抑制效率的值是可比的。来自偏振测量的数据意味着抑制作为测试介质中的混合型抑制分子的化合物,但大多数最小化阴极反应。通过R-2值获得实验井的数据与R-2值和倾斜剂量均匀。 Gibbs自由能量吸附能量的值范围为-33.96至-37.62 kJ mol(-1),表明通过物理和化学吸附机构的交换,分子通过交换自发地吸附到金属表面。能量分散X射线(EDX)光谱结果显示出低于钢和扫描电子显微镜(SEM)显微镜的表面上的氧气百分比的减少,也表明含有Schiff基部的溶液中的金属表面的最小损伤在没有抑制剂的情况下比作溶液。 DFT计算的结果表明,分子与钢表面相互作用高倾向。所得能量间隙(EV)的值为4.09,3.74,3.69和3.58,而从分子动态模拟研究中获得的估计吸附能量为654.2,-760.8,-741.3和-951.9 kJ mol(-1),用于Hmamb,Hncamb ,tmcamb和tmcatp分别。 (c)2020由elsevier b.v发布。

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