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Effective anticorrosion coatings prepared from sulfonated electroactive polyurea

机译:由磺化电活性聚脲制备的有效防腐涂层

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In the present study, the sulfonated electroactive polyurea (S-EPU) was first prepared and characterized, applied as an anticorrosion coating. The electroactive oligomer sulfonated amine-capped aniline trimer (S-ACAT) was synthesized by oxidative coupling reaction, followed by characterization using Fourier-transform infrared (FTIR) and mass spectroscopy (MS). For the preparation of sulfonated electroactive polyurea (S-EPU), isophorone diisocyanate (IPDI) was reacted with poly(tetramethylene ether) glycol (PTMEG) in the presence of a specific amount of diamine S-ACAT. The success of the S-EPU was confirmed through FTIR and GPC. After that the redox capability of as-prepared S-EPU was confirmed by CV studies. Chemical oxidization of S-EPU, carried out through the introduction of trace amount of ammonium persulfate, was monitored by UV-VIS spectroscopy. The electrochemical corrosion of the electroactive polymer-coated cold-rolled steel (CRS) electrode, in neutral, acidic and alkaline conditions, were measured and compared. As compared to non-electroactive polyurea (N-EPU), results showed enhanced corrosion protection of the S-EPU coating and electroactive polyurea (EPU) coating, owing to their redox capability that induces the formation of densely passive metal oxide layer (e.g., Fe2O3 and Fe3O4). The densely metal oxide layers induced by S-EPU/EPU coatings were further confirmed by Raman spectroscopy, SEM and ESCA. Moreover, the S-EPU coating exhibited better anticorrosion performance than that of EPU coating which could be attributed to the higher electro-catalytic property of S-EPU coating upon CRS electrode, causing the formation of more densely metal oxide layers to shelter the underlying metal substrate.
机译:在本研究中,首先制备磺化的电活性聚脲(S-EPU)并表征,作为防腐涂层施用。通过氧化偶联反应合成电活性低聚物磺化胺封端的苯胺三聚体(S-ACAT),然后使用傅立叶变换红外(FTIR)和质谱(MS)表征。为了制备磺化的电活性聚脲(S-EPU),在特定量的二胺S-ACAT的存在下,与聚(四亚甲基醚)二醇(PTMEG)反应的异佛尔酮二异氰酸酯(IPDI)。通过FTIR和GPC确认了S-EPU的成功。之后,通过CV研究证实了如制备的S-EPU的氧化还原能力。通过UV-Vis光谱监测通过引入痕量的铵过硫酸铵进行S-EPU的化学氧化。测量并比较电活性聚合物涂覆的冷轧钢(CRS)电极的电化学腐蚀,在中性,酸性和碱性条件下进行比较。与非电活性聚脲(N-EPU)相比,由于它们的氧化还原能力诱导了密集被动金属氧化物层的形成(例如,所述),结果表明S-EPU涂层和电活性聚脲(EPU)涂层的增强腐蚀保护。(例如, Fe2O3和Fe3O4)。通过拉曼光谱,SEM和ESCA进一步证实了S-EPU / EPU涂层诱导的密集金属氧化物层。此外,S-EPU涂层表现出比EPU涂层更好的防腐性能,其可归因于CRS电极上的S-EPU涂层的较高电催化性能,从而导致形成更密集的金属氧化物层以遮挡底层金属基质。

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