The multiple faces of graphene on anticorrosion: Advances and prospects

Qi Wang, Xiaoqian Zhao, Yan Qu, Bingwei Zhong, Huabing Tan, Yaxuan Zheng, Xuezheng Yang, Shichao Ge, Jingzhi Hu, Hua Yuan
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Abstract

In recent years, graphene has remarkably enhanced the protective performance of anticorrosive organic coatings, yielding increasingly frequent exciting results and perspectives. This paper reviews the latest research advancements that we have gathered on the influences of conductivity, modification, dispersion methods and controllable orientation of graphene; the graphene-based smart anticorrosive coatings; the current understandings on the designs of the anticorrosive coating and the action mechanisms of graphene in the coating. It is concluded that there would be greater opportunities for the gravitational field-induced method to play the shielding effect of graphene; noncovalent modification methods may not ensure satisfactory attachment of the modifiers to the surface; green modification methods are expected to reduce the electrical conductivity of graphene and covalently modify graphene; the self-healing and early-warning graphene-based anticorrosive coatings are becoming a trend in the development of anti-corrosive coatings. The current-faced challenges and the future development prospects of the graphene-based anticorrosive coating were also proposed. Although graphene performs well in anticorrosive coatings, there is still considerable room to improve the performance, and a new round of industrial optimisation and upgrading in the anti-corrosion coating industry is inevitable with the rapid development of the anticorrosive graphene-based filler.
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石墨烯在防腐方面的多面性:进展与前景
近年来,石墨烯显著提升了有机防腐涂料的防护性能,取得了越来越多令人振奋的成果和前景。本文综述了我们在石墨烯的导电性、改性、分散方法和可控取向的影响;石墨烯基智能防腐涂料;防腐涂料的设计和石墨烯在涂料中的作用机理等方面的最新研究进展。结论是引力场诱导法将有更大的机会发挥石墨烯的屏蔽作用;非共价改性方法可能无法确保改性剂在表面上得到满意的附着;绿色改性方法有望降低石墨烯的导电性,并对石墨烯进行共价改性;自修复和预警型石墨烯基防腐涂料正成为防腐涂料发展的趋势。同时还提出了石墨烯基防腐涂料目前面临的挑战和未来的发展前景。虽然石墨烯在防腐涂料中的性能表现良好,但仍有较大的提升空间,随着石墨烯基防腐填料的快速发展,防腐涂料行业新一轮的产业优化升级势在必行。
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