首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Advanced anticorrosive materials prepared from amine-capped aniline trimer-based electroactive polyimide-clay nanocomposite materials with synergistic effects of redox catalytic capability and gas barrier properties
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Advanced anticorrosive materials prepared from amine-capped aniline trimer-based electroactive polyimide-clay nanocomposite materials with synergistic effects of redox catalytic capability and gas barrier properties

机译:由胺基苯胺三聚体基电活性聚酰亚胺-粘土纳米复合材料制备的高级防腐材料,具有氧化还原催化能力和阻气性的协同作用

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摘要

In this study, preparation and electrochemical corrosion protection studies of a series of polyimide-Clay nanocomposite (PCN) materials were first presented. Subsequently, the as-prepared PCN materials were characterized by FTIR, XRD and TEM studies. In-situ monitoring for redox behavior of as-prepared PCN materials was identified by UV-visible and CV studies. It should be noted that PCN coating was found to reveal advanced corrosion protection effect on cold-rolled steel (CRS) electrode as compared to that of neat non-electroactive polyimide coating based on series of electrochemical corrosion measurements in 5 wt% NaCl electrolyte. Enhancement of corrosion protection of PCN coatings on CRS electrode may be interpreted by following two possible reasons: (1) redox catalytic capabilities (i.e., electroactivity) of ACAT units existed in electroactive PCN may induce formation of passive metal oxide layers on CRS electrode, as evidenced by SEM and ESCA studies. (2) well-dispersed layered organophilic clay platelets embedded in electroactive PCN matrix could functioned as hinder with high aspect ratio to effectively enhance the oxygen barrier property of PCN, as evidenced by GPA.
机译:在这项研究中,首先介绍了一系列聚酰亚胺-粘土纳米复合材料(PCN)材料的制备和电化学腐蚀防护研究。随后,通过FTIR,XRD和TEM研究对制备的PCN材料进行表征。通过紫外线可见和CV研究确定了对制备的PCN材料的氧化还原行为的原位监测。应该注意的是,与基于一系列非电化学活性的5wt%NaCl电解质测量的纯非电活性聚酰亚胺涂层相比,发现PCN涂层对冷轧钢(CRS)电极具有先进的腐蚀防护作用。可以通过以下两个可能的原因来解释CRS电极上PCN涂层腐蚀防护的增强:(1)电活性PCN中存在的ACAT单元的氧化还原催化能力(即电活性)可能会诱导CRS电极上形成钝化金属氧化物层,因为SEM和ESCA研究证明。 (2)GPA证明,嵌入电活性PCN基质中的均匀分散的层状亲有机性粘土血小板可以作为高纵横比的障碍物,有效增强PCN的氧阻隔性能。

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