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Chemical modification at the surface and corrosion inhibition response of two semicarbazones on carbon steel in HCl medium

机译:HCl培养基中两种氨基脲对碳钢的表面和腐蚀抑制反应的化学改性

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Two similarly structured heterocyclic semicarbazones (E)-4-(5-((2-carbamoylhydrazano)methyl)furan-2-yl)benzoic acid (CPFASC) and (E)-2-((5-(4-nitrophenyl)furan-2-yl)methylene)hydrazinecarboxamide (NPFASC) were synthesized, characterized and tested for their corrosion protection capacity on carbon steel (CS) in 1?M HCl solution. Contrary to expectation the non-planar molecule NPFASC showed better inhibition efficiency on CS surface than CPFASC. At a concentration of 0.5?mM, NPFASC displayed 93.4?% while CPFASC showed 89.9?% inhibition efficiency according to impedance studies. This unusual behavior can be explained by the conversion of the nitro group present in the NPFASC molecule into amino group on approaching the metal surface in the corrosive medium. This transformation obviously changes the geometry of the molecule which is more conducive for corrosion inhibition. Analysis of the corrosion product deposited on the surface of the metal revealed the mechanism behind the inhibitive power of molecules. Adsorption studies showed that CPFASC and NPFASC follow Freundlich and El-Awady isotherms, respectively, on the carbon steel surface. Adsorption equilibrium constant and free energy of adsorption were also evaluated. The corrosion investigations were done by gravimetric, EIS and polarization studies and the surface analysis of the metal specimens was performed by SEM, AFM and IR spectral spectroscopy.
机译:两种类似结构化的杂环氨基脲(E)-4-(5 - ((2-氨基甲酰酰酰肼)甲基)呋喃-2-基)苯甲酸(CPFASC)和(E)-2 - ((5-(4-硝基苯基)呋喃合成,表征和测试亚甲基)亚甲基亚甲酰胺(NPFASC),其在1μl碳钢(Cs)上的腐蚀保护能力。与期望相反,非平面分子NPFASC表现出比CPFASC的CS表面更好的抑制效率。浓度为0.5Ωmm,NPFASC显示93.4?%,而CPFASC根据阻抗研究表现出89.9倍的抑制效率。这种不寻常的行为可以通过将NPFASC分子中的硝基组转化为在腐蚀性培养基中接近金属表面的氨基中的硝基。该转化显然改变了分子的几何形状,更有利于腐蚀抑制。沉积在金属表面上的腐蚀产品的分析显示了分子抑制作用背后的机制。吸附研究表明,CPFASC和NPFASC分别在碳钢表面上分别在碳钢表面上分别进行Freundlich和El-Awady等温物。还评估吸附平衡恒定和吸附的自由能量。通过重量测量,EIS和偏振研究进行腐蚀性研究,并通过SEM,AFM和IR光谱光谱进行金属样品的表面分析。

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