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Preparation of Polyurethane Monolithic Resins and Modification with a Condensed Tannin-Yielding Self-Healing Property

机译:聚氨酯整体树脂的制备及具有单宁缩合的自修复性能

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摘要

Resins of polyurethane were prepared from vegetable oils (crambe and castor) and modified by adding green corrosion inhibitor (condensed tannin). The oils were characterized by gas chromatography with flame-ionization detection (GC-FID), attenuated total reflectance Fourier transform infrared spectroscopy (FTIR-ATR) and thermogravimetric analysis (TGA). The reaction was monitored by characterizing the intermediate products (polyester and prepolymer). The polyester was characterized by solubility in methanol, acidity index, hydroxyl groups and FTIR-ATR, and the prepolymer was characterized by solid content, solvent content, isocyanate (NCO) groups and FTIR-ATR. The formation of PU resins was confirmed by FTIR-ATR and TGA, and the presence of tannin particles incorporated in the coating can be observed by optical microscopy (OM). The absence of the band attributed to NCO in FTIR-ATR spectra of the resins confirmed the complete reaction between polyester and prepolymer. The OM observation and a video demonstrate that Polyurethane (PU)-modified with condensed tannin resin presents self-healing effect, probably through the formation of new hydrogen bonds when in contact with deionized water. Therefore, these results open possibilities for new synthetic routes aiming at improving the very important self-healing property for protecting metals and their alloys against corrosion, extending significantly the metallic materials lifetime as previously demonstrated by our group.
机译:聚氨酯树脂是从植物油(克拉贝和蓖麻油)中制备的,并通过添加绿色缓蚀剂(缩合单宁)进行改性。通过具有火焰电离检测的气相色谱(GC-FID),衰减全反射傅里叶变换红外光谱(FTIR-ATR)和热重分析(TGA)对油进行表征。通过表征中间产物(聚酯和预聚物)来监测反应。聚酯的特征在于在甲醇中的溶解度,酸度指数,羟基和FTIR-ATR,预聚物的特征在于固体含量,溶剂含量,异氰酸酯(NCO)基团和FTIR-ATR。通过FTIR-ATR和TGA确认了PU树脂的形成,并且可以通过光学显微镜(OM)观察到涂层中掺入的单宁颗粒的存在。树脂的FTIR-ATR光谱中没有归因于NCO的谱带,证实了聚酯和预聚物之间的完全反应。 OM观察和视频显示,用缩合的单宁树脂改性的聚氨酯(PU)表现出自修复作用,很可能是通过与去离子水接触形成新的氢键来实现的。因此,这些结果为新的合成路线打开了可能性,这些路线旨在改善非常重要的自愈性能,以保护金属及其合金不受腐蚀,从而大大延长了金属材料的使用寿命,正如我们小组先前所证明的那样。

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