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Impedance response of nanocomposite coatings comprising of polyvinyl butyral and Haydale's plasma processed graphene

机译:纳米复合涂层的阻抗反应,包括聚乙烯醇丁醛和Haydale等离子体加工石墨烯

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摘要

In this research, the electrochemical impedance spectroscopy study was conducted on graphene/polyvinyl butyral nanocomposite coatings. Functionalized graphene used in this study was produced by Haydale's plasma modification process involved different gasses or their mixer such as argon, fluorine, and oxygen. The presence of porous bounded Warburg and Gerischer diffusion elements in the model circuits indicate that coatings behave as electrolyte diffusion limited or porous electrode that improves the mass transport resistance by trapping the electrolyte solution in the coating. Capacitive-resistive behavior at intermediate to lower frequencies range in phase angles also confirms the blocking behavior towards corrosive species. Small-angle x-ray scattering study shows that coatings have surface fractels structure of intermediate roughness to a smoother surface for composites coatings indicating improved dispersion of graphene in resin, which resulted enhanced barrier properties.
机译:在该研究中,在石墨烯/聚乙烯丁醛纳米复合材料涂层上进行电化学阻抗光谱研究。 本研究中使用的官能化石墨烯由Haydale的血浆改性过程产生涉及不同的气体或其混合器,例如氩气,氟和氧气。 模型电路中的多孔有界Warburg和Gerischer扩散元件的存在表明涂层表现为电解质扩散限制或多孔电极,通过捕获涂层中的电解质溶液来提高质量传递电阻。 相位角度的中间到较低频率范围的电容性电阻性也证实了抗腐蚀性物种的阻塞行为。 小角度X射线散射研究表明,涂层具有中间粗糙度的表面粗糙度,用于复合材料涂层的漂亮表面,表明在树脂中改善石墨烯的分散体,这导致了增强的阻隔性能。

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