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Effect of DES-NiO System on Modified Lignin and Synthesis of Lignin-Based Epoxy Resin

机译:DES-NIO系统对木质素基环氧树脂改性木质素和合成的影响

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A new method that nickel oxide (NiO) and the deep eutectic solvent (DES) consisted of choline chloride-urea (ChCl-urea) was used to modify lignin and subsequently synthesize LGEP (lignin-based epoxy resin). The effect of DES-NiO system on lignin and as-prepared LGEP structures was investigated by using FTIR (Fourier transform infrared spectroscopy), TG-DTG (Thermo gravimetric analysis and Derivative thermo gravimetric analysis), SEM (Scanning electron microscope), XRD (X-ray Diffraction), AFM (Atomic force microscopy) and C-13-NMR (C-13-Nuclear magnetic resonance). The results demonstrated that the hydroxyl content and three-dimensional structure of lignin could effectively improve and change by using DES-NiO system. This was attributed to the ability of NiO to fracture selectively C-O bonds and hydrogen-bond interaction of DES can influence the structure of lignin. These various changes on lignin structures improved the reactivity of lignin. The synthetic experiment proven that DES-NiO system modified lignin could efficiently reacted with epoxy chloropropane (ECH) to prepare LGEP. In addition, it was found that the excess ECH was against producing LGEP due to the self-polymerization of ECH.
机译:一种新的氧化镍(NIO)和深的共晶溶剂(DES)由胆碱氯化脲(CHCL-UREA)组成的新方法来修饰木质素,随后合成LGEP(基蛋白基环氧树脂)。通过使用FTIR(傅里叶变换红外光谱),TG-DTG(热重分析和衍生热重量分析),SEM(扫描电子显微镜),SEM(扫描电子显微镜),研究了DES-NIO系统对木质素和制备的LGEP结构的影响。XRD( X射线衍射),AFM(原子力显微镜)和C-13-NMR(C-13-核磁共振)。结果表明,通过使用DES-NIO系统可以有效地改善和改变木质素的羟基含量和三维结构。这归因于NIO对裂缝的能力选择性C-O键和DES的氢键相互作用可以影响木质素的结构。木质素结构的这些各种变化改善了木质素的反应性。证明的合成实验证明了DES-NIO系统改性木质素可以有效地与环氧氯丙烷(ECH)反应以制备LGEP。此外,发现由于eqh的自聚合而过度的ech是反对产生LGEP。

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