Department of Chemistry, College of Science, King Faisal University, 31982, Al-Hasa, Saudi Arabia.
Department of Chemistry, Faculty of Science, Sohag University, Sohag, 82524, Egypt.
Sci Rep. 2023 Jun 3;13(1):9058. doi: 10.1038/s41598-023-36222-0.
Two organoselenium thiourea derivatives, 1-(4-(methylselanyl)phenyl)-3-phenylthiourea (DS036) and 1-(4-(benzylselanyl)phenyl)-3-phenylthiourea (DS038) were produced and categorized using FTIR and NMR (H and C). The effectiveness of the above two compounds as C-steel corrosion inhibitors in molar HCl was evaluated using the potentiodynamic polarization (PD) and electrochemical impedance spectroscopy (EIS) techniques. PD findings indicate that DS036 and DS038 have mixed-type features. EIS results show that growing their dose not only changes the polarization resistance of C-steel from 18.53 to 363.64 and 463.15 Ω cm but also alters the double layer capacitance from 710.9 to 49.7 and 20.5 μF cm in the occurrence of 1.0 mM of DS036 and DS038, respectively. At a 1.0 mM dose, the organoselenium thiourea derivatives displayed the highest inhibition efficiency of 96.65% and 98.54%. The inhibitory molecule adsorption proceeded along the Langmuir isotherm on the steel substrate. The adsorption-free energy of the adsorption process was also intended and indicated a combined chemical and physical adsorption on the C-steel interface. FE-SEM studies support the adsorption and protective abilities of the OSe-based molecule inhibitor systems. In Silico calculations (DFT and MC simulations) explored the attraction between the studied organoselenium thiourea derivatives and corrosive solution anions on a Fe (110) surface. The obtained results show that these compounds can make a suitable preventing surface and control the corrosion rate.
两种有机硒硫脲衍生物,1-(4-(甲基硒基)苯基)-3-苯基硫脲(DS036)和 1-(4-(苄基硒基)苯基)-3-苯基硫脲(DS038),通过傅里叶变换红外光谱(FTIR)和核磁共振(H 和 C)进行了生产和分类。使用动电位极化(PD)和电化学阻抗谱(EIS)技术评估了这两种化合物在摩尔 HCl 中作为 C 钢缓蚀剂的效果。PD 研究结果表明 DS036 和 DS038 具有混合型特征。EIS 结果表明,随着剂量的增加,不仅改变了 C 钢的极化电阻,从 18.53 到 363.64 和 463.15 Ω·cm,而且还改变了双层电容,从 710.9 到 49.7 和 20.5 μF·cm,分别在 1.0 mM 的 DS036 和 DS038 的情况下。在 1.0 mM 剂量下,有机硒硫脲衍生物显示出最高的抑制效率,分别为 96.65%和 98.54%。抑制分子的吸附是沿着钢基底上的 Langmuir 等温线进行的。还测定了吸附过程的吸附自由能,表明在 C-钢界面上发生了化学和物理吸附的综合作用。FE-SEM 研究支持 OSe 基分子抑制剂体系的吸附和保护能力。计算化学(DFT 和 MC 模拟)研究了研究的有机硒硫脲衍生物与腐蚀性溶液阴离子在 Fe(110)表面之间的吸引力。得到的结果表明,这些化合物可以形成合适的阻挡层并控制腐蚀速率。