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Advanced electrochemical methods for characterizing the performance of organic coatings.

机译:表征有机涂层性能的先进电化学方法。

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摘要

Advanced electrochemical techniques such as electrochemical impedance spectroscopy (EIS), electrochemical noise method (ENM) and coulometry as tools to study and extract information about the coating system is the focus of this thesis. This thesis explored three areas of research. In all the three research areas, advanced electrochemical techniques were used to extract information and understand the coating system. The first area was to use EIS and coulometric technique for extracting information using AC-DC-AC method. It was examined whether the total charge passing through the coating during the DC polarization step of AC-DC-AC determines coating failure. An almost constant total amount of charge transfer was required by the coating before it failed and was independent of the applied DC polarization.;The second area focused in this thesis was to investigate if embedded sensors in coatings are sensitive enough to monitor changes in environmental conditions and to locate defects in coatings by electrochemical means. Influence of topcoat on embedded sensor performance was also studied. It was observed that the embedded sensors can distinguish varying environmental conditions and locate defects in coatings. Topcoat could influence measurements made using embedded sensors and the choice of topcoat could be very important in the successful use of embedded sensors.;The third area of research of this thesis work was to examine systematically polymer-structure coating property relationships using electrochemical impedance spectroscopy. It was observed that the polymer modifications could alter the electrochemical properties of the coating films. Moreover, it was also observed that by cyclic wet-dry capacitance measurement using aqueous electrolyte and ionic liquid, ranking of the stability of organic polymer films could be performed.
机译:先进的电化学技术,如电化学阻抗谱(EIS),电化学噪声法(ENM)和电量分析法作为研究和提取涂层系统信息的工具,是本文的重点。本文探讨了三个方面的研究。在这三个研究领域中,均采用了先进的电化学技术来提取信息并了解涂层系统。第一个领域是使用EIS和库仑技术通过AC-DC-AC方法提取信息。检查了在AC-DC-AC的DC极化步骤期间穿过涂层的总电荷是否确定涂层失败。涂层在失效之前需要几乎恒定的电荷转移总量,并且与施加的直流极化无关。本论文的第二个重点是研究涂层中的嵌入式传感器是否足够灵敏以监测环境条件的变化并通过电化学手段定位涂层中的缺陷。还研究了面漆对嵌入式传感器性能的影响。据观察,嵌入式传感器可以区分变化的环境条件并定位涂层中的缺陷。面漆可能会影响使用嵌入式传感器进行的测量,面漆的选择对于嵌入式传感器的成功使用非常重要。本论文研究的第三领域是使用电化学阻抗谱系统地检查聚合物-结构涂层性能之间的关系。观察到,聚合物改性可以改变涂膜的电化学性能。此外,还观察到,通过使用水性电解质和离子液体的循环干-干电容测量,可以对有机聚合物膜的稳定性进行排名。

著录项

  • 作者

    Upadhyay, Vinod.;

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Chemistry Polymer.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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