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Epoxy coating with in-situ synthesis of polypyrrole functionalized graphene oxide for enhanced anticorrosive performance

机译:具有原位合成聚吡咯官能化石墨烯氧化物的环氧涂层,用于增强防腐性能

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摘要

This work introduced an in-situ polymerization method to synthesize nanoscale additive for waterborne epoxy (WEP) coatings. The polypyrrole functionalized graphene oxide (GO-PPy) was synthesized via in-situ process to grow polypyrrole (PPy) film on graphene oxide (GO) surface. The structures and morphologies of the synthesized nanocomposites were characterized by FI-TR, XRD, Raman and FESEM techniques. Incorporation of two mass ratios of GO-PPy nanocomposite into the WEP coating had an obvious improvement in corrosion protection performance of the coating. Among the nanocomposite coatings, GP(o.)05% coating showed the best impermeable and corrosion protection performance compared to other coatings. Electrochemical impedance measurement (EIS) results showed that GP(o.)05% coating significantly exhibited the impermeable properties and corrosion protection performance. The protective mechanism of GO-PPy nanocomposites was attributed to passivation effect of conductive PPy and impermeable property of graphene oxide sheets. This work might provide a new candidate coating for metal protection through a facile, environmentally friendly method.
机译:该工作介绍了一种原位聚合方法,用于合成水性环氧(WEP)涂层的纳米级添加剂。通过原位方法合成聚吡咯官能化的石墨烯氧化物(GO-PPY),以在氧化烯氧化物(GO)表面上生长聚吡咯(PPY)膜。通过Fi-Tr,XRD,拉曼和FeSEM技术表征合成纳米复合材料的结构和形态。将Go-PPY纳米复合材料的两种质量比掺入WEP涂层的涂层腐蚀性性能明显改善。在纳米复合材料涂层中,与其他涂层相比,GP(O.)05%涂层显示出最佳的不透气和腐蚀保护性能。电化学阻抗测量(EIS)结果表明,GP(O.)05%涂层显着表现出不透水性和腐蚀保护性能。 Go-PPY纳米复合材料的保护机理归因于石墨烯氧化物片的导电PPY和不透水性的钝化效果。这项工作可以通过容易环境友好的方法提供用于金属保护的新候选涂层。

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