Asperti Davide, Cabrini Marina, Lorenzi Sergio, Rosace Giuseppe, Omrani Abdollah, Pastore Tommaso
Department of Engineering and Applied Sciences, School of Engineering, University of Bergamo, 24044 Dalmine, Italy.
Faculty of Chemistry Iran, University of Mazandaran, Babolsar 4741613534, Iran.
Materials (Basel). 2024 Jun 20;17(12):3028. doi: 10.3390/ma17123028.
Electrochemical impedance spectroscopy (EIS) is a modern and efficient method for the evaluation of the protective abilities of coatings. However, the interpretation of the experimental data is a difficult task. This paper aims to investigate the effect of the addition of a nano clay, Cloesite 30B, on the barrier properties of an epoxy-based system through electrochemical impedance spectroscopy in an aerated sodium chloride solution. The EIS spectra of the samples analysed showed different evolutions over time. The subsequent processing of spectra using equivalent electrical circuits is an excellent analytical tool and allows the protective capacity of coatings to be assessed. By using this analysis, it was possible to define and comprehend the impact of adding nano clay in different concentrations to the epoxy resin coating. The work has shown the effectiveness of increasing the barrier effect of the coating with this type of nano clay. However, the improvement is linked to obtaining a correct dispersion of nanoparticles. Otherwise, there is the formation of macro-clusters of particles inside the coating. Their appearance can cause a deterioration in coating performance.
电化学阻抗谱(EIS)是一种评估涂层防护能力的现代高效方法。然而,对实验数据的解读是一项艰巨的任务。本文旨在通过在曝气氯化钠溶液中采用电化学阻抗谱来研究添加纳米粘土Cloesite 30B对环氧基体系阻隔性能的影响。分析的样品的EIS谱图随时间呈现出不同的变化。使用等效电路对谱图进行后续处理是一种出色的分析工具,可用于评估涂层的防护能力。通过这种分析,能够确定并理解向环氧树脂涂层中添加不同浓度纳米粘土的影响。这项工作表明了使用这种类型的纳米粘土提高涂层阻隔效果的有效性。然而,这种改善与纳米颗粒的正确分散有关。否则,涂层内部会形成颗粒的宏观聚集体。它们的出现会导致涂层性能下降。