Avant-Garde Polymer/Graphene Nanocomposites for Corrosion Protection: Design, Features, and Performance

Ayesha Kausar, I. Ahmad, M. H. Eisa, M. Maaza
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引用次数: 1

Abstract

Polymeric coatings have been widely selected for the corrosion resistance of metallic surfaces. Both the conducting and non-conducting polymers have been applied for corrosion confrontation. The conducting polymers usually possess high electrical conductivity and corrosion resistance features. On the other hand, non-conducting hydrophobic polymers have also been used to avert the metal erosion. To improve the corrosion inhibition performance of the polymer coatings, nanocarbon nanofillers have been used as reinforcement. Graphene, especially, has gained an important position in the research on the corrosion-protecting nanocomposite coatings. Here, graphene dispersion and matrix–nanofiller interactions may significantly improve the anti-corrosion performance to protect the underlying metals. The graphene nanofiller may form an interconnecting percolation network in the polymers to support their electrical conductivity and thus their corrosion confrontation characteristics. Further research on the polymer/graphene nanocomposite and its anti-corrosion mechanism may lead to great advancements in this field.
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先进的聚合物/石墨烯纳米复合材料的防腐:设计,特点和性能
聚合物涂层被广泛用于金属表面的耐腐蚀。导电聚合物和非导电聚合物都被应用于腐蚀对抗。导电聚合物通常具有高导电性和耐腐蚀性。另一方面,非导电疏水聚合物也被用于避免金属侵蚀。为了提高聚合物涂层的缓蚀性能,采用纳米碳纳米填料作为增强剂。特别是石墨烯在纳米复合防腐涂层的研究中占有重要的地位。在这里,石墨烯分散和基质-纳米填料的相互作用可以显著提高抗腐蚀性能,以保护底层金属。石墨烯纳米填料可以在聚合物中形成相互连接的渗透网络,以支持它们的导电性,从而支持它们的腐蚀对抗特性。对聚合物/石墨烯纳米复合材料及其防腐机理的进一步研究可能会在这一领域取得重大进展。
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