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      Performance evaluation of mercapto functional hybrid silica sol–gel coating and its synergistic effect with f-GNs for corrosion protection of copper surface

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          A nanocomposite coating comprising mercapto functional hybrid silica sol–gel coating and functionalized graphene nanoplates nanocomposite coatings with advanced anticorrosive properties was prepared by a sol–gel method. In this study, graphene oxide (GO) nanoplates were silanized using 3-aminopropyltriethoxysilane (APTES) to obtain functional graphene nanoplates (f-GNs). The f-GNs were characterized by FTIR, XRD, XPS, TEM, AFM and TGA techniques. The functionalized graphene nanoplates were chemically bonded to a sol–gel matrix and showed good dispersion in the sol. Then, silica hybrid sol–gel nanocomposites with raw GO and different amounts of f-GNs were applied on the copper surface. Uniform, defect-free and adherent sol–gel films were obtained. Various corresponding methods were used to investigate the nanocomposite coating's properties. The corrosion resistance of copper significantly improved after being coated with mercapto functional hybrid silica sol–gel. The addition of f-GNs to the mercapto functional silica sol–gel coatings further improved the corrosion resistance due to a synergistic effect. Moreover, with an increase in the amount of f-GNs in the nanocomposite coating, the nanocomposite showed improved corrosion resistance. The nanocomposite containing 0.1 wt% f-GNs can efficiently protect the copper substrate from corrosion. This improvement was primarily attributed to the homogeneous dispersion of the f-GNs in the silica gel matrix and their effective barrier against corrosive molecules and ions. However, adding raw GO or excess f-GNs to the silica hybrid sol–gel coating had a negative effect on the corrosion resistance.

          Abstract

          An anticorrosion coating on copper consisting of mercapto functional hybrid silica sol–gel and f-GNs nanoplates with a synergistic effect was prepared.

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          Principles and Prevention of Corrosion

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            Author and article information

            Journal
            RSC Adv
            RSC Adv
            RA
            RSCACL
            RSC Advances
            The Royal Society of Chemistry
            2046-2069
            16 February 2018
            14 February 2018
            16 February 2018
            : 8
            : 14
            : 7438-7449
            Affiliations
            [a] Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences Ningbo 315201 P. R. China liuzhixiong@ 123456nimte.ac.cn +86-574-86685159 +86-574-86685035
            [b] Institute of Materials, Shanghai University Shanghai 200072 P. R. China
            [c] Department of Equipment Support and Remanufacturing, Academy of Army Armored Force Beijing 100072 P. R. China
            Author information
            https://orcid.org/0000-0002-8784-8658
            Article
            c7ra11435d
            10.1039/c7ra11435d
            9078482
            35539113
            8d11327a-10be-4950-9d79-22796bc180c5
            This journal is © The Royal Society of Chemistry
            History
            : 16 October 2017
            : 20 January 2018
            Page count
            Pages: 12
            Funding
            Funded by: National Natural Science Foundation of China, doi 10.13039/501100001809;
            Award ID: 51603217
            Categories
            Chemistry
            Custom metadata
            Paginated Article

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