Elaryian Hani M, Bedair Mahmoud A, Bedair Ahmed H, Aboushahba Rabab M, Fouda Abd El-Aziz S
Department of Chemistry, Faculty of Science (Men's Campus), Al-Azhar University Nasr City 11884 Cairo Egypt
Zohr Gas Field, Belayim Petroleum Company Nasr City 7074 Cairo Egypt.
RSC Adv. 2022 Oct 13;12(45):29350-29374. doi: 10.1039/d2ra05803k. eCollection 2022 Oct 11.
Three novel -phenylenediamine and benzidine coumarin derivatives were synthetized, namely: 4,4'-((((1,4-phenylenebis(azaneylylidene))bis(ethan-1-yl-1-ylidene))bis(2-oxo-2-chromene-3,6-diyl))bis(diazene-2,1-diyl))dibenzenesulfonic acid (PhODB), 4,4'-(((-([1,1'-biphenyl]-4,4'-diylbis(azaneylylidene))bis(ethan-1-yl-1-ylidene))bis(2-oxo-2-chromene-3,6-diyl))bis(diazene-2,1-diyl))dibenzenesulfonic acid (BODB) and 4,4'-(((-((3,3'-dimethoxy-[1,1'-biphenyl]-4,4'-diyl)bis(azaneylylidene))bis(ethan-1-yl-1-ylidene))bis(2-oxo-2-chromene-3,6-iyl))bis(diazene-2,1-diyl))dibenzenesulfonic acid (DODB). Their chemical structures were proved by performing Fourier-transform infrared spectroscopy, proton nuclear magnetic resonance and mass spectrometry analysis. The synthesized -phenylenediamine and benzidine coumarin derivatives were tested as corrosion inhibitors for mild steel (MS) in 1 M HCl solution using weight loss, electrochemical, morphological, and theoretical studies. The compound 3,3'-dimethoxy benzidine coumarin derivative (DODB) was proved to give the highest efficiency with 94.98% obtained from weight loss measurements. These compounds are mixed inhibitors, as seen by the polarization curves. Impedance diagrams showed that when the concentration of these derivatives rose, the double-layer capacitance fell and the charge transfer resistance increased. Calculated thermodynamic parameters were computed and the mechanism of adsorption was also studied for the synthesized -phenylenediamine and benzidine coumarin derivatives. The ability of the synthesized derivatives to protect the surface against corrosion was investigated by scanning electron microscope (SEM), UV-visible spectroscopy and energy dispersive X-ray spectroscopy (EDX). Theoretical chemical calculations (DFT) and biological resistivity (SRB) were investigated.
合成了三种新型对苯二胺和联苯胺香豆素衍生物,即:4,4'-((((1,4-亚苯基双(氮烯基亚基))双(乙烷-1-亚基-1-亚基))双(2-氧代-2-色烯-3,6-二基))双(二氮烯-2,1-二基))二苯磺酸(PhODB)、4,4'-(((-([1,1'-联苯]-4,4'-二基双(氮烯基亚基))双(乙烷-1-亚基-1-亚基))双(2-氧代-2-色烯-3,6-二基))双(二氮烯-2,1-二基))二苯磺酸(BODB)和4,4'-(((-((3,3'-二甲氧基-[1,1'-联苯]-4,4'-二基)双(氮烯基亚基))双(乙烷-1-亚基-1-亚基))双(2-氧代-2-色烯-3,6-亚基))双(二氮烯-2,1-二基))二苯磺酸(DODB)。通过傅里叶变换红外光谱、质子核磁共振和质谱分析证实了它们的化学结构。使用失重法、电化学法、形态学法和理论研究法,对合成的对苯二胺和联苯胺香豆素衍生物作为1 M HCl溶液中低碳钢(MS)的缓蚀剂进行了测试。通过失重测量发现,化合物3,3'-二甲氧基联苯胺香豆素衍生物(DODB)的缓蚀效率最高,为94.98%。从极化曲线可以看出,这些化合物是混合型缓蚀剂。阻抗图表明,当这些衍生物的浓度增加时,双层电容下降,电荷转移电阻增加。计算了合成的对苯二胺和联苯胺香豆素衍生物的热力学参数,并研究了其吸附机理。通过扫描电子显微镜(SEM)、紫外可见光谱和能量色散X射线光谱(EDX)研究了合成衍生物保护表面免受腐蚀的能力。研究了理论化学计算(DFT)和生物抗性(SRB)。