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Fabrication and characterisation of electro-brush plated nickel-graphene oxide nano-composite coatings

机译:电刷镀镍-氧化石墨烯纳米复合涂层的制备与表征

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The extraordinary mechanical and anti-corrosion properties of graphene call for facile fabrication of graphene-based coatings with high uniformity and in large area. This research was aimed at exploring the use of an electro-brush plating technique for the production of graphene-metal nano-composite coatings. Graphene oxide (GO) was introduced into the nickel plating solution at varied concentrations and composite coatings were fabricated on stainless steel surfaces by brush plating under the same conditions. The morphology and microstructure of the obtained Ni-GO composite coatings were fully characterised and compared with neat Ni coating. The results confirm that GO sheets have been incorporated into the nickel matrix homogeneously, leading to a considerably reduced average crystallite size. Nanoindentation measurements demonstrated that GO can not only improve the hardness and reduce the plasticity of the composite matrix, but also enhance the thermal stability of the composite coating effectively. It has also been revealed by polarisation and electrochemical impedance spectroscopy (EIS) analysis that GO can increase the corrosion resistance of the composite coating owing to its barrier effect. However, it was also noticed that excessive GO content resulted in a degradation of both mechanical and corrosion properties, likely due to a more defective microstructure.
机译:石墨烯具有非凡的机械性能和抗腐蚀性能,因此需要方便地制造具有高均匀性和大面积的石墨烯基涂层。这项研究的目的是探索使用电刷镀技术生产石墨烯-金属纳米复合涂层。将氧化石墨烯(GO)以不同的浓度引入到镍镀液中,并在相同条件下通过刷镀在不锈钢表面制备复合涂层。充分表征了所得Ni-GO复合镀层的形貌和微观结构,并与纯Ni镀层进行了比较。结果证实GO薄板已经均匀地掺入镍基体中,从而导致平均微晶尺寸显着减小。纳米压痕测试表明,GO不仅可以提高复合材料的硬度,降低复合材料的可塑性,而且可以有效提高复合涂层的热稳定性。极化和电化学阻抗谱(EIS)分析还表明,由于GO的阻挡作用,GO可以提高复合涂层的耐腐蚀性。但是,还注意到,过量的GO含量可能导致机械性能和腐蚀性能的下降,这可能是由于微观结构缺陷所致。

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