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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Synthesis and evaluating corrosion protection effects of emeraldine base PAni/clay nanocomposite as a barrier pigment in zinc-rich ethyl silicate primer
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Synthesis and evaluating corrosion protection effects of emeraldine base PAni/clay nanocomposite as a barrier pigment in zinc-rich ethyl silicate primer

机译:富锌硅酸乙酯底漆中作为阻挡颜料的翡翠碱型PAni /粘土纳米复合材料的合成及防护性能评价

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摘要

In the present work, polyaniline/clay nanocomposite (PAniCN) was synthesized by chemical oxidative polymerization of aniline monomers in the presence of Closite30B powders. XRD and SEM examinations were used to examine the intercalation and morphologies of PAniCN, respectively. Electrical conductivity test showed that the conductivity of final PAniCN was higher than pristine PAni by one order of magnitude. Synthesized nanocomposite was added to the zinc rich ethyl silicate primer to modify its barrier properties. The corrosion protection performances of modified and unmodified primers were evaluated using open circuit potential (OCP) and electrochemical impedance spectroscopy (EIS) in 3.5% sodium chloride solution for a period of 120 days. It was found that the modified primer had higher barrier properties than original primer. After 120 days of immersion, resistance of modified and unmodified primers reaches 5.565 × 10~3 Ω cm~2 and 6.056 × 10~2 Ω cm~2 respectively. The OCP of both primers were lower than -800 mV/SCE during the immersion. Besides, the OCP of modified primer was higher than the original primer due to the passivation and barrier effects of PAniCN. Results revealed that the performance of modified primer improved strongly.
机译:在目前的工作中,在Closite30B粉末的存在下,通过苯胺单体的化学氧化聚合反应合成了聚苯胺/粘土纳米复合材料(PAniCN)。 XRD和SEM检查分别用于检查PAniCN的插层和形态。电导率测试表明,最终PAniCN的电导率比原始PAni高一个数量级。将合成的纳米复合材料添加到富锌硅酸乙酯底漆中,以改变其阻隔性能。使用开路电势(OCP)和电化学阻抗谱(EIS)在3.5%氯化钠溶液中评估了改性和未改性底漆的腐蚀防护性能,为期120天。发现改性底漆具有比原始底漆更高的阻隔性能。浸泡120天后,修饰和未修饰引物的电阻分别达到5.565×10〜3Ωcm〜2和6.056×10〜2Ωcm〜2。在浸入过程中,两种引物的OCP均低于-800 mV / SCE。此外,由于PAniCN的钝化和阻隔作用,修饰引物的OCP高于原始引物。结果表明,修饰引物的性能大大提高。

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