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Electrochemical preparation and characterization of nickel and zinc-modified poly-2-aminothiazole films on mild steel surface and their corrosion inhibition performance

机译:低碳钢表面镍和锌改性聚-2-氨基噻唑膜的电化学制备,表征及其缓蚀性能

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摘要

Poly-2-aminothiazole (pAT) was electrochemically synthesized on a mild steel (MS) specimen from 0.3 M aqueous ammonium oxalate solution containing 0.01 M 2-aminothiazole (2-AT) using cyclic voltamme-try technique. The synthesized polymer film was then modified by electrodeposition of 100 μgcm~(-2) Ni (MS/pAT-Ni) and Zn (MS/pAT-Zn) on top of the polymer surface. The surface morphologies of the polymer films were examined by scanning electron microscopy (SEM) and atomic force microscopy (AFM). The elemental analysis of the surface films was performed by energy dispersive X-ray spectroscopy (EDX). The effectiveness of the coatings in preventing corrosion of MS in 3.5% NaCl solution was assessed using electrochemical techniques. It was found that the obtained coatings were adherent to the steel surface. The pAT film provided a good corrosion protection against the attack of corrosive environment. Moreover, the modification of pAT film by deposition of Ni and Zn on top of the polymer surface significantly enhances the corrosion protection performance of the polymer film by exhibiting an improved barrier effect against the attack of corrosive environment. The surface morphologies and protection ability of the layers were found to be dependent on the type of deposited metal.
机译:使用循环伏安法在低碳钢(MS)样品上从0.3 M含0.01 M 2-氨基噻唑(2-AT)的草酸铵水溶液中电化学合成聚-2-氨基噻唑(pAT)。然后通过在聚合物表面的顶部电沉积100μgcm〜(-2)的Ni(MS / pAT-Ni)和Zn(MS / pAT-Zn)修饰合成的聚合物膜。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)检查聚合物膜的表面形态。表面膜的元素分析是通过能量色散X射线光谱法(EDX)进行的。使用电化学技术评估了涂层在防止MS在3.5%NaCl溶液中腐蚀方面的有效性。发现获得的涂层粘附在钢表面上。 pAT膜提供了良好的腐蚀防护,可抵抗腐蚀性环境的侵袭。此外,通过在聚合物表面的顶部上沉积Ni和Zn来改性pAT膜,通过表现出改善的抵抗腐蚀环境的阻挡作用,显着增强了聚合物膜的腐蚀防护性能。发现层的表面形态和保护能力取决于沉积的金属的类型。

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