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Polypyrrole-based nanocomposites doped with both salicylate/molybdate and graphene oxide for enhanced corrosion resistance on low-carbon steel

机译:掺杂水杨酸盐/钼酸盐和氧化石墨烯的聚吡咯基纳米复合材料可增强低碳钢的耐腐蚀性

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摘要

In this work, polypyrrole-based nanocomposites doped with graphene oxide, molybdate, and salicylate (PPy/GO/Mo/Sal) were synthesized via in situ electrochemical polymerization to enhance the anti-corrosion protection performance of polymer coatings. The morphology and structures of the coatings were characterized by SEM, EDX, FTIR, Raman spectroscopy, and XRD. The protection abilities of coatings against corrosion were investigated in 0.1 M NaCl solution with EIS potentiodynamic polarization, salt spray test, and open-circuit potential (OCP) measurements. The results showed that with the presence of both molybdate/salicylate and GO in the PPy matrix, the nanocomposite coating exhibited an excellent protection ability against corrosion for low-carbon steel, better than that with only GO as filler. Compared to the nanocomposites doped with only salicylate or salicylate/GO, the one doped with both molybdate/salicylate and GO exhibited the longest protection plateau (ca. 100 h) on the OCP-time curves with some fluctuation points known as the self-healing action of molybdate dopant. It also resulted in a decrease in the corrosion current (Tafel plots), a higher impedance (Bode plot), and a better protection performance in salt spray tests. In this case, the anti-corrosion ability of the coatings was provided through a barrier and self-healing mechanism.
机译:本工作通过原位电化学聚合合成了掺杂氧化石墨烯、钼酸盐和水杨酸盐 (PPy/GO/Mo/Sal) 的聚吡咯基纳米复合材料,以增强聚合物涂层的防腐保护性能。通过 SEM、EDX、FTIR、拉曼光谱和 XRD 对涂层的形貌和结构进行了表征。在 0.1 M NaCl 溶液中,使用 EIS 动电位极化、盐雾测试和开路电位 (OCP) 测量研究了涂层的防腐蚀能力。结果表明,在 PPy 基体中同时存在钼酸盐/水杨酸盐和 GO 的情况下,纳米复合涂层对低碳钢表现出优异的防腐蚀能力,优于仅以 GO 作为填料的涂层。与仅掺杂水杨酸盐或水杨酸盐/GO 的纳米复合材料相比,同时掺杂钼酸盐/水杨酸盐和 GO 的纳米复合材料在 OCP 时间曲线上表现出最长的保护平台期(约 100 小时),并有一些波动点称为钼酸盐掺杂剂的自修复作用。它还导致腐蚀电流降低(塔菲尔图),阻抗更高(波特图),并在盐雾测试中获得更好的保护性能。在这种情况下,涂层的防腐蚀能力是通过屏障和自修复机制提供的。

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