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Poly(m-phenylenediamine) encapsulated graphene for enhancing corrosion protection performance of epoxy coatings

机译:聚间苯二胺封装石墨烯用于增强环氧涂料防腐性能

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摘要

Abstract Graphene (G) is regarded as a tremendous potential corrosion protection material owing to its perfect impermeability. However, the tendency of graphene nanosheets to agglomerate and the corrosion-promotion effect brought by its native high electrical conductivity seriously affect its anti-corrosion application. In this paper, high-energy ball milling was used to prepare graphene with excellent impermeability. Then, insulating poly(m-phenylenediamine) encapsulated graphene (G@PmPD, conductivity of 1.2 × 10−7 S cm−1) was prepared through non-covalent π–π interaction. The resulting amino-rich G@PmPD exhibits stable dispersibility and excellent compatibility in organic solvents and polymer matrix. Embedding 0.5 wt of G@PmPD into the epoxy matrix, and the composite coating can effectively protect the steel substrate for up to 60 d. This superior corrosion resistance is attributed to the impermeability inherited by G@PmPD and the compactness improved by the cross-linking of G@PmPD and EP. Especially in the damaged state, the composite coating embedded with low conductivity G@PmPD triumphantly eliminated graphene’s corrosion-promotion effect. This study provides promising inspiration for the application of graphene in anti-corrosion field.
机译:摘要 石墨烯(G)具有良好的抗渗性,被认为是一种具有巨大潜力的防腐材料。然而,石墨烯纳米片的团聚倾向及其固有的高导电性带来的缓蚀效果严重影响了其防腐应用。本文采用高能球磨法制备了具有优异抗渗性的石墨烯。然后,通过非共价π–π相互作用制备了绝缘聚间苯二胺封装石墨烯(G@PmPD,电导率为1.2 × 10−7 S cm−1)。所得富氨基G@PmPD在有机溶剂和聚合物基体中表现出稳定的分散性和优异的相容性。将0.5wt%的G@PmPD嵌入环氧树脂基体中,复合涂层可有效保护钢基体长达60 d。这种优越的耐腐蚀性归因于G@PmPD继承的不渗透性以及G@PmPD和EP的交联提高了致密性。 特别是在损坏状态下,嵌入低电导率的复合涂层G@PmPD胜利地消除了石墨烯的缓蚀作用。该研究为石墨烯在防腐领域的应用提供了新的启示。

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