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Fabrication of nitrogen doped graphene oxide coatings: experimental and theoretical approach for surface protection

机译:氮掺杂氧化石墨烯涂层的制备:表面保护的实验和理论方法

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摘要

In this work, we present a simple strategy of fabricating an N-doped graphene oxide (N-GO) coating on stainless steel (SS) for protective applications. Electrochemical, surface analytical and quantum chemical techniques were employed to characterize the synthesized coatings on the SS surface. Graphene oxide (GO) and reduced graphene oxide (rGO) coatings on SS were adopted for comparison. The downshift of the G band in the Raman spectra of N-GO corroborated the incorporation of N atoms and the deconvoluted spectra of N1s revealed that N-GO coatings retain three types of nitrogen. The influence of N doping on the surface roughness and hydrophobicity of GO was investigated using surface topographic and contact angle measurements. An electrochemical corrosion study on the coatings indicated that N doping of GO enhances the corrosion resistance of SS in 3.5% NaCl solution more than GO and rGO. In order to describe the underlying mechanism, the adsorption energies of GO coatings with SS were computed using molecular dynamics simulation (MDS). The MDS results revealed that all the coating systems adsorbed in a parallel orientation on the Fe surface. N-GO coating exhibited the strongest and the most stable chemisorbed interaction on SS when compared to GO and rGO.
机译:在这项工作中,我们提出了一种在不锈钢(SS)上制造用于保护应用的N掺杂氧化石墨烯(N-GO)涂层的简单策略。电化学,表面分析和量子化学技术被用来表征SS表面上的合成涂层。比较了SS上的氧化石墨烯(GO)和还原的氧化石墨烯(rGO)涂层。 N-GO拉曼光谱中G谱带的下降证实了N原子的结合,N1s的去卷积光谱表明N-GO涂层保留了三种类型的氮。使用表面形貌和接触角测量研究了氮掺杂对GO表面粗糙度和疏水性的影响。涂层的电化学腐蚀研究表明,GO的N掺杂比GO和rGO增强了3.5%NaCl溶液中SS的耐腐蚀性。为了描述其潜在机理,使用分子动力学模拟(MDS)计算了带有SS的GO涂层的吸附能。 MDS结果表明,所有涂层体系均以平行取向吸附在Fe表面上。与GO和rGO相比,N-GO涂层在SS上表现出最强和最稳定的化学吸附相互作用。

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