无机材料学报 ›› 2017, Vol. 32 ›› Issue (12): 1257-1263.DOI: 10.15541/jim20160699 CSTR: 32189.14.10.15541/jim20160699

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高温热还原氧化石墨烯/聚酰亚胺复合涂层的制备及防腐蚀性能研究

贾营坤1,2, 陈培1, 张青红1, 孙静2   

  1. 1. 东华大学 材料科学与工程学院, 上海 201620;
    2. 中国科学院 上海硅酸盐研究所, 上海 200050
  • 收稿日期:2016-12-27 修回日期:2017-07-18 出版日期:2017-12-20 网络出版日期:2017-11-21
  • 作者简介:贾营坤(1991-), 女, 硕士研究生. E-mail: jykun8909@163.com
  • 基金资助:
    国家自然科学基金(61574148, 51272265, 51402340, 61301036);国家重点研发计划专项项目(2016YFA0203000);National Natural Science Foundation of China (61574148, 51272265, 51402340, 61301036);National Key Research and Development Program (2016YFA0203000)

Thermal Reduced Graphene Oxide/Polyimide Nanocomposite Coating: Fabrication and Anticorrosive Property

JIA Ying-Kun1,2, CHEN Pei1, ZHANG Qing-Hong1, SUN Jing2   

  1. 1. College of Materials Science and Engineering, Donghua University, Shanghai 201620, China;
    2. Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • Received:2016-12-27 Revised:2017-07-18 Published:2017-12-20 Online:2017-11-21

摘要:

将高温热还原氧化石墨烯(TRGO)作为二维纳米填料添加到聚酰亚胺(PI)聚合物基质中, 制备了不同质量分数的TRGO/PI纳米复合耐蚀涂层, 采用交流阻抗谱和动电位极化曲线评估了涂层在模拟海水(3.5wt%NaCl溶液)中的电化学腐蚀行为。结果表明: 与纯PI涂层相比, 添加TRGO可以显著提高涂层的电阻和腐蚀防护效率; 当TRGO的添加量为0.3wt%时, 对涂层耐蚀性能的增强效果最好, 最大涂层电阻为1.3176×106 Ω, 最高腐蚀防护效率可达到99.65%, 其防蚀增益与片层结构TRGO的物理阻隔性能有关。

 

关键词: 石墨烯, 聚酰亚胺, 耐腐蚀, 复合涂层

Abstract:

Thermal reduced graphene oxide (TRGO) was incorporated into polyimide (PI) matrix as two-dimensional nanofillers and TRGO/PI nanocomposite anticorrosive coatings were fabricated. Then AC impedance spectroscopy and dynamic potential polarization curves were adopted to evaluate the electrochemical corrosion behavior of the obtained coatings in simulated seawater (3.5wt% NaCl solution). The results show that the addition of TRGO significantly improves the coating resistance and corrosion protection efficiency compared with pure PI coating. Besides, the TRGO/PI composite coating with the addition of 0.3wt% TRGO shows the most excellent anticorrosive property, with the maximum coating resistance of 1.3176×106 Ω and the highest corrosion protection efficiency of 99.65%. The enhanced anticorrosive property can be attributed to the physical barrier properties of the TRGO with lamellar structure.

Key words: graphene,, polyimide,, anticorrosive,, composite, coating

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