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Corrosion Protection Properties of Nano NH2-Reduced Graphene Oxide/Epoxy Composite Coatings Formed by Self-Curing on Magnesium Alloy

机译:纳米NH2降氧化物氧化物/环氧复合涂层的腐蚀保护性能通过自固化镁合金形成

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摘要

Nano NH2-reduced graphene oxide (NGO) and NGO/epoxy resin coatings were prepared, respectively. NGO/epoxy coating was successfully coated on magnesium alloy substrates. X-ray diffraction patterns, Fourier transform infrared spectroscopy, Scanning electron microscopy techniques were used to characterize the composition and morphology of NGO and composite coatings. The effect of the content of NGO on the corrosion protection performance of coatings was evaluated with electrochemical measurements in 3.5 wt.% NaCl solutions. Tafel and electrochemical impedance spectroscopy analysis revealed that an optimal addition amount of 0.3 wt.% NGO provided the superior corrosion protection properties. The composite coatings exhibited outstanding barrier properties against aggressive species compared to pure epoxy coating. The self-curing reaction of amine and epoxy radicals could produce the compact cross-linking reticular structure. This self-curing reaction was a nucleophilic addition, and amine radical preferred to bond the (b) site of graphene sheets due to the lowest Gibbs free energy. The cross-linking structure and some polar groups could act as a good reservoir for corrosive medium via absorption and fixation.
机译:纳米NH2-还原的石墨烯氧化物(NGO)和非政府组织/制备的环氧树脂涂料,分别。 NGO /环氧涂料被成功地涂覆在镁合金的基材。 X射线衍射图案,红外光谱,扫描电子显微技术进行了表征NGO和复合涂层的组成和形态。在3.5%(重量)NaCl溶液电化学测量NGO对涂层的腐蚀保护性能的内容的效果进行评价。塔菲尔和电化学阻抗谱分析表明,0.3%(重量)的最佳添加量NGO提供优越的防腐蚀保护性能。该复合涂层相比于纯环氧涂料对侵蚀性物种表现出杰出的阻隔性能。胺和环氧基团的自固化反应能产生紧凑的交联网状结构。这个自固化反应是亲核加成,并且由于最低吉布斯自由能胺自由基优选键的石墨烯片的(B)位点。的交联结构和某些极性基团可以作为良好的贮存器,用于经由吸收和固定腐蚀性介质。

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