首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Application of EIS and EN techniques to investigate the self-healing ability of coatings based on microcapsules filled with linseed oil and CeO2 nanoparticles
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Application of EIS and EN techniques to investigate the self-healing ability of coatings based on microcapsules filled with linseed oil and CeO2 nanoparticles

机译:EIS和EN技术在研究基于亚麻籽油和CeO2纳米颗粒填充的微胶囊的涂层的自愈能力中的应用

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Microcapsules with urea formaldehyde as the shell and linseed oil as the healing agent were synthesized by a previously reported procedure. Two kinds of synthesized microcapsules, without and with CeO2 nanoparticles, were separately added to the epoxy resin coatings. The epoxy coatings containing microcapsules were applied on carbon steel, and their self-healing effect was investigated in 0.5 M HCI solution. The amount of the released healing agent that filled up the scratch was estimated by scratch filling efficiency (SFE). The SFE values are only the theoretical estimates of the self-healing performance. The scratch sealing efficiency (SSE), which is a measure of corrosion protection performance of the damaged coating, can be measured by electrochemical impedance spectroscopy (EIS) and electrochemical noise (EN) techniques. For sake of an optimum self-healing system, two series of coatings, with and without nanoparticles, were prepared by using different microcapsule concentrations: 5, 10, 15 and 20 wt%. For comparison, a coating without microcapsules was also prepared. The coated samples with 5% microcapsule concentration, due to the low amount of released linseed oil, could not properly repair the artificial scratch. In contrast, when the microcapsule concentration was equal to or higher than 10% the volume of the released linseed oil was enough to seal the scratch. However, the coating sample containing 15% nanoparticle-loaded microcapsules was the optimum self-healing coating because it showed comparable SSE values to those of samples containing 20% microcapsule concentration in spite of its lower microcapsule concentration. The EN method was employed as a complementary quantitative technique to study the self-healing behavior of coatings. The calculation of the amount of noise charges using the standard deviation of partial signal (SDPS) plots arising from wavelet analysis made it possible to obtain the SSE values of the coatings. The good agreement between EIS and EN results indicates that the EN technique, as well as the EIS method, can be used successfully for the self-healing evaluation. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过先前报道的方法合成了以尿素甲醛为壳,亚麻子油为愈合剂的微胶囊。将没有和带有CeO2纳米粒子的两种合成的微胶囊分别添加到环氧树脂涂料中。将含有微囊的环氧涂料涂覆在碳钢上,并在0.5 M HCl溶液中研究其自愈效果。通过划痕填充效率(SFE)估计填充划痕的释放的固化剂的量。 SFE值仅是自我修复性能的理论估计。划痕密封效率(SSE)是对受损涂层的防腐蚀性能的一种度量,可以通过电化学阻抗谱(EIS)和电化学噪声(EN)技术进行测量。为了最佳的自我修复系统,通过使用不同的微囊浓度:5、10、15和20 wt%,制备了具有和不具有纳米颗粒的两个系列的涂层。为了比较,还制备了没有微胶囊的涂层。微胶囊浓度为5%的涂层样品由于亚麻籽油释放量少,无法正确修复人造划痕。相反,当微胶囊浓度等于或高于10%时,释放的亚麻籽油的体积足以密封刮痕。但是,含有15%纳米颗粒的微胶囊的涂层样品是最佳的自修复涂层,因为尽管其微胶囊浓度较低,但其SSE值却与含20%纳米胶囊的样品相当。 EN方法被用作辅助定量技术,以研究涂料的自愈性能。利用小波分析产生的部分信号的标准偏差(SDPS)图来计算噪声电荷的数量,从而可能获得涂层的SSE值。 EIS和EN结果之间的良好一致性表明,EN技术以及EIS方法可以成功地用于自我修复评估。 (C)2014 Elsevier B.V.保留所有权利。

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