Fouda A S, Abdel-Wahed H M, Atia M F, El-Hossiany A
Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Department of Chemistry, Faculty of Science, Tanta University, Tanta, Egypt.
Sci Rep. 2023 Oct 16;13(1):17593. doi: 10.1038/s41598-023-44873-2.
A Novel 5,10,15,20-tetra (thiophen-2-yl) porphyrin (P1) and 5,10,15,20-tetrakis (5-Bromothiophen-2-yl) porphyrin (P2) were successfully synthesized, and their chemical structures were proved based on its correct elemental analysis and spectral data (IR and H-NMR). These compounds were examined as corrosion inhibitors for stainless steel 304 (SS304) in 2 M HCl utilizing mass reduction (MR) and electrochemical tests at inhibitor concentration (1 × 10-21 × 10 M). The protection efficiency (IE %) was effectively enhanced with improving the concentration of investigated compounds and reached 92.5%, 88.5% at 21 × 10 M for P1 & P2, respectively and decreases with raising the temperature. Langmuir's isotherm was constrained as the best fitted isotherm depicts the physical-chemical adsorption capabilities of P1 & P2 on SS304 surface with change in ΔG = 22.5 kJ mol. According to the PDP data reported, P1 and P2 work as mixed find inhibitors to suppress both cathodic and anodic processes. Porphyrin derivatives (P1 & P2) are included on the surface of SS304, according to surface morphology techniques SEM/EDX and AFM. Quantum calculations (DFT) and Monte Carlo simulation (MC) showed the impact of the chemical structure of porphyrin derivatives on their IE %.
一种新型的5,10,15,20-四(噻吩-2-基)卟啉(P1)和5,10,15,20-四(5-溴噻吩-2-基)卟啉(P2)成功合成,基于其正确的元素分析和光谱数据(红外光谱和氢核磁共振)证明了它们的化学结构。利用质量减少法(MR)和电化学测试,在抑制剂浓度为1×10⁻²至1×10⁻¹M的条件下,研究了这些化合物作为304不锈钢(SS304)在2M盐酸中的缓蚀剂。随着所研究化合物浓度的提高,缓蚀效率(IE%)有效提高,P1和P2在1×10⁻¹M时分别达到92.5%和88.5%,且随温度升高而降低。朗缪尔等温线被确定为最佳拟合等温线,描述了P1和P2在SS304表面的物理化学吸附能力,其吉布斯自由能变化(ΔG)为22.5kJ/mol。根据极化动力学数据报道,P1和P2作为混合型缓蚀剂抑制阴极和阳极过程。根据扫描电子显微镜/能谱仪(SEM/EDX)和原子力显微镜(AFM)等表面形貌技术,卟啉衍生物(P1和P2)附着在SS304表面。量子计算(DFT)和蒙特卡罗模拟(MC)表明卟啉衍生物的化学结构对其缓蚀效率的影响。