Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Department of Chemistry, Faculty of Science, Tanta University, Tanta, Egypt.
Sci Rep. 2024 Jul 12;14(1):16112. doi: 10.1038/s41598-024-65266-z.
In the present work, Verbena Officinalis (VO) leaf extract was used as potential corrosion inhibitor for the corrosion of carbon steel (CS) in 0.5 M HSO medium. Further, the corrosion inhibiting nature of VO leaf extract towards the CS was evaluated using mass loss (ML), potentiodynamic polarization (PDP), electrical impedance spectroscopy (EIS) and surface morphological analyses using atomic force microscope (AFM) and X-ray photoelectron spectroscopy (XPS) techniques. Calculation of activation energy using Arrhenius equation shows the increase in activation energy when adding the VO leaf extract in 0.5 M HSO medium and the maximum activation energy ( = 49.9 kJ mol) was observed for 1000 mg L VO leaf extract in acid medium. The negative free energy values suggested the spontaneous and the stability of the adsorbed layer of VO leaf extract on the CS surface. Using EIS measurements, high percent inhibitory effectiveness of 91.1% for 1000 ppm solutions was achieved. With an increase in VO leaf extract dose, the double layer capacitance (C) values fall while the values of charge transfer (R) increase. This showed that a protective layer of VO leaf extract on CS surface was formed. The polarization curves showed that the VO leaf extract acts as a mixed-type inhibitor. It is discovered that the adsorption of VO leaf extract molecules adhering to the CS surface followed the Langmuir isotherm. The anti-corrosion action of VO leaf extract is fully demonstrated by some surface techniques.
在本工作中,马鞭草(Verbena Officinalis,VO)叶提取物被用作潜在的碳钢(Carbon Steel,CS)在 0.5 M HSO 介质中腐蚀的抑制剂。此外,还使用质量损失(Mass Loss,ML)、动电位极化(Potentiodynamic Polarization,PDP)、电化学阻抗谱(Electrochemical Impedance Spectroscopy,EIS)和原子力显微镜(Atomic Force Microscope,AFM)及 X 射线光电子能谱(X-ray Photoelectron Spectroscopy,XPS)技术对 VO 叶提取物对 CS 的腐蚀抑制性质进行了评估。使用 Arrhenius 方程计算活化能表明,当在 0.5 M HSO 介质中添加 VO 叶提取物时,活化能增加,在酸介质中添加 1000 mg/L VO 叶提取物时观察到最大活化能( = 49.9 kJ mol)。负的自由能值表明 VO 叶提取物在 CS 表面的吸附层是自发和稳定的。使用 EIS 测量,在 1000 ppm 溶液中实现了高达 91.1%的高抑制效率。随着 VO 叶提取物剂量的增加,双层电容(Capacitance,C)值下降,而电荷转移(Resistance,R)值增加。这表明在 CS 表面形成了 VO 叶提取物的保护层。极化曲线表明,VO 叶提取物作为一种混合型抑制剂发挥作用。发现 VO 叶提取物分子的吸附遵循 Langmuir 等温线。VO 叶提取物的防腐作用通过一些表面技术得到了充分的证明。