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Porphyrins as Corrosion Inhibitors for N80 Steel in 3.5% NaCl Solution: Electrochemical, Quantum Chemical, QSAR and Monte Carlo Simulations Studies

机译:卟啉作为N80钢在3.5%NaCl溶液中的腐蚀抑制剂:电化学,量子化学,QSAR和蒙特卡洛模拟研究

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摘要

The inhibition of the corrosion of N80 steel in 3.5 wt. % NaCl solution saturated with CO2 by four porphyrins, namely 5,10,15,20-tetrakis(4-hydroxyphenyl)-21H,23H-porphyrin (HPTB), 5,10,15,20-tetra(4-pyridyl)-21H,23H-porphyrin (T4PP), 4,4,4,4'"-(porphyrin-5,10,15,20-tetrayl)tetrakis(benzoic acid) (THP) and 5,10,15,20-tetraphenyl-21H,23H-porphyrin (TPP) was studied using electrochemical impedance spectroscopy (EIS), potentiodynamic polarization, scanning electrochemical microscopy (SECM) and scanning electron microscopy (SEM) techniques. The results showed that the inhibition efficiency, % increases with increasing concentration of the inhibitors. The EIS results revealed that the N80 steel surface with adsorbed porphyrins exhibited non-ideal capacitive behaviour with reduced charge transfer activity. Potentiodynamic polarization measurements indicated that the studied porphyrins acted as mixed type inhibitors. The SECM results confirmed the adsorption of the porphyrins on N80 steel thereby forming a relatively insulated surface. The SEM also confirmed the formation of protective films of the porphyrins on N80 steel surface thereby protecting the surface from direct acid attack. Quantum chemical calculations, quantitative structure activity relationship (QSAR) were also carried out on the studied porphyrins and the results showed that the corrosion inhibition performances of the porphyrins could be related to their E-HOMO, E-LUMO, , and values. Monte Carlo simulation studies showed that THP has the highest adsorption energy, while T4PP has the least adsorption energy in agreement with the values of sigma from quantum chemical calculations.
机译:N80钢在3.5 wt。由四种卟啉(即5,10,15,20-四(4-羟苯基)-21H,23H-卟啉(HPTB),5,10,15,20-四(4-吡啶基)- 21H,23H-卟啉(T4PP),4,4,4,4'“-(卟啉-5,10,15,20-四基)四(苯甲酸)(THP)和5,10,15,20-四苯基采用电化学阻抗谱(EIS),电位极化,扫描电化学显微镜(SECM)和扫描电子显微镜(SEM)技术对-21H,23H-卟啉(TPP)进行了研究,结果表明,随着浓度的增加,抑制率%增加。 EIS结果表明,吸附有卟啉的N80钢表面表现出非理想的电容行为,降低了电荷转移活性;动电极化测量表明,所研究的卟啉充当了混合型抑制剂,SECM结果证实了该抑制剂的吸附。 N80钢上的卟啉从而形成相对绝缘的表面。 o确认在N80钢表面上形成了卟啉保护膜,从而保护了表面免受直接酸侵蚀。还对所研究的卟啉进行了量子化学计算,定量结构活性关系(QSAR),结果表明,卟啉的缓蚀性能可能与其E-HOMO,E-LUMO和值有关。蒙特卡罗模拟研究表明,THP具有最高的吸附能,而T4PP具有的最小吸附能与量子化学计算中sigma的值一致。

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