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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Graphene oxide encapsulated by mesoporous silica for intelligent anticorrosive coating: studies on release models and self-healing ability
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Graphene oxide encapsulated by mesoporous silica for intelligent anticorrosive coating: studies on release models and self-healing ability

机译:石墨烯氧化物包封由中孔二氧化硅,用于智能防腐蚀涂层:关于释放模型和自我愈合能力的研究

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摘要

Conductive graphene accelerates localized corrosion at exposed coating-metal interfaces as a cathode, which impedes its applications in metal protection. Nevertheless, graphene-polymer coatings are still the best option due to the original impermeability and chemical stability once the galvanic coupling is cut. However, it is difficult to guarantee the miscibility when graphene is employed as the nanofiller. Herein, a bi-layered nanocomposite coating with self-healing capability at the functional level that ensures strong interfacial interaction is reported in this work. Unlike previous nanofiller coatings, the coating with the benzotriazole-loaded nanoreservoir intermediate layer structure and poly (vinyl butyral-co-vinyl alcohol-co-vinyl acetate) topcoat was fabricated via the dip-coating and spin-coating technique, respectively. An efficient nanoreservoir with a thickness of 35 nm for corrosion inhibitor delivery was synthesized by a combination of the oil-water stratification method and vacuum loading. Semiempirical models, which have scarcely been reported on corrosion inhibitor release, were blazed to predict the diffusion mechanism. The corrosion resistance was evaluated by electrochemical characterization. With a nanoreservoir loading of 0.25 g/(20 mL ethanol), the bilayer nanocomposite coating not only improved the barrier properties, but also showed self-healing ability for long-term protection. This strategy provides a candidate for the development of graphene-based anticorrosion coatings.
机译:导电石墨烯在暴露的涂层金属界面处加速局部腐蚀作为阴极,这阻碍了其在金属保护中的应用。然而,一旦切割电镀耦合,石墨烯 - 聚合物涂层仍然是由于原始不透明性和化学稳定性的最佳选择。然而,难以保证将石墨烯作为纳米填充物的混溶性。这里,在该工作中报道了在功能水平处具有自愈合能力的双层纳米复合涂层,该纳米复合材料在该工作中报道了强烈的界面相互作用。与以前的纳米填充涂层不同,通过浸涂和旋涂技术分别通过浸涂和旋涂技术制造具有苯并三唑负载的纳米硼中间层结构和聚(乙烯基丁醛 - 乙烯基醇 - 乙烯基乙烯酯)面膜。通过油水分层法和真空载荷的组合合成了腐蚀抑制剂递送厚度为35nm的有效纳米硼。几乎没有关于腐蚀抑制剂释放的半血流模型被燃烧以预测扩散机制。通过电化学表征评估耐腐蚀性。纳米硼硼负荷为0.25g /(20ml乙醇),双层纳米复合涂层不仅提高了阻挡性能,而且还显示出自我愈合的长期保护能力。该策略为基于石墨烯的防腐涂层提供了一种候选者。

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  • 作者单位

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Shandong Univ Inst Marine Sci &

    Technol Qingdao 266200 Shandong Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ; 无机化学 ;
  • 关键词

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