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Thermosets resins prepared from soybean oil and lignin derivatives with high biocontent, superior thermal properties, and biodegradability

机译:热固性试管树脂由大豆油和具有高生物不善的衍生物,优异的热性能和生物降解性的衍生物制备

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摘要

A bio-based monomer, methacrylated vanillyl alcohol (MVA), had been synthesized from vanillyl alcohol with methacrylate anhydride (MAA) via a solvent-free, efficient method. The synthesis of MVA was confirmed by Fourier transform infrared (FTIR) and proton nuclear magnetic resonance (H-1 NMR). It was used to copolymerize with acrylated epoxidized soybean oil (AESO) to prepare a bio-based resin (MVA-AESO). Excess MAA of MVA synthesis was further used to modify AESO with hydroxyl groups, generating (MVA-MAESO) with higher unsaturation degree. Their chemical structure and modification were characterized using C-13 NMR and Fourier transform infrared analyses. Pure AESO and MVA resins were used to compare with MVA-AESO and MVA-MAESO in terms of their viscosity, curing performance, mechanical, and thermal properties. The synthesized MVA-AESO and MVA-MAESO resins showed much lower viscosities than pure AESO due to the dilution of MVA. In addition, the incorporation of MVA reduced curing temperatures, activation energies which caused MVA-AESO and MVA-MAESO had higher curing degree than pure AESO. With the combination of MVA and modification of MAA, flexible AESO networks exhibited superior flexural properties, storage modulus, glass-transition temperature, and thermal stability. Furthermore, the biodegradation of the formulated bio-based resins were also investigated. Results showed that the addition of monomer and the increase in the content of C(sic)C bonds did not significantly affect the biodegradability of AESO, which may be due to the fact that the degradable groups of AESO were not affected. This environmentally friendly, low (volatile organic) resin, prepared by a high efficiency and environmental protection synthetic route, can potentially replace typical petroleum-based thermosets for the production environmentally friendly thermosetting resins. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48827.
机译:通过无溶剂,有效的方法从vanilyl醇合成的基于生物基单体,甲基丙烯酸甲基丙烯酸甲醇(MVA),通过甲基丙烯酸酐(MAA)合成。通过傅里叶变换红外(FTIR)和质子核磁共振(H-1 NMR)证实了MVA的合成。它用于将丙烯酸酯化的环氧化大豆油(AESO)共聚,制备生物基树脂(MVA-Aeso)。 MVA合成的过量Maa进一步用于用羟基修饰Aeso,产生较高不饱和度的(MVA-Maeso)。它们的化学结构和改性的特征在于使用C-13 NMR和傅立叶变换红外分析。纯AESO和MVA树脂用于与MVA-Aeso和MVA-MaESO在其粘度,固化性能,机械和热性能方面进行比较。由于MVA的稀释,合成的MVA-Aeso和MVA-Maeso树脂显示出比纯Aeso的粘度远低得多。此外,掺入MVA降低的固化温度,导致MVA-Aeso和MVA-Maeso的活化能量具有比纯Aeso更高的固化程度。随着MVA的组合和MAA的修改,柔性Aeso网络表现出卓越的弯曲性能,储存模量,玻璃化温度和热稳定性。此外,还研究了配制的生物基树脂的生物降解。结果表明,添加单体和C(SiC)C键的含量的增加没有显着影响Aeso的生物降解性,这可能是由于AESO可降解组不受影响。通过高效率和环保合成途径制备的这种环保的低(挥发性有机)树脂可以替代典型的石油基热固性剂,用于生产环保的热固性树脂。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,137,48827。

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