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首页> 外文期刊>ChemSusChem >Copolymerization as a Strategy to Combine Epoxidized Linseed Oil and Furfuryl Alcohol: The Design of a Fully Bio-Based Thermoset
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Copolymerization as a Strategy to Combine Epoxidized Linseed Oil and Furfuryl Alcohol: The Design of a Fully Bio-Based Thermoset

机译:作为结合环氧化亚氧化油和糠醇的策略的共聚:完全生物基热固性的设计

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摘要

Epoxidized linseed oil and furfuryl alcohol are bio-sourced monomers known for their high-potential applications in materials science. In this work, we propose the association of these monomers through copolymerization reactions with the target to design fully bio-based thermosets. Herein, investigations on cationic polymerization reactivity have been explored using differential scanning calorimetry. The obtained structures have been confirmed by IR spectroscopy and 2D NMR spectroscopy, which revealed the principal chain connections. In spite of the multiple capabilities of chemical connections, which include copolymerization and cross-linking, the obtained networks are homogeneous as confirmed by dynamic mechanical analysis and SEM. Furthermore, the copolymer demonstrates a semiductile behavior if subjected to tensile measurements (tensile strain at break. 40%), which is a significant advance in terms of its applications as a furanic bio-based thermoset material.
机译:环氧化的亚麻籽油和糠醇是已知其高潜在应用的生物生物生物灌注单体。 在这项工作中,我们通过将这些单体与靶标的共聚反应提出结合,以设计完全生物基热量。 这里,使用差示扫描量热法探索了对阳离子聚合反应性的研究。 通过IR光谱和2D NMR光谱证实所获得的结构,其揭示了主链连接。 尽管有多种化学连接能力,包括共聚和交联,所获得的网络是通过动态机械分析和SEM的确认的均匀性。 此外,共聚物如果经过拉伸测量(断裂的拉伸菌株),共聚物表明了一种神经动脉行为,这是其作为其作为呋喃基生物的热固性材料的应用方面的显着提前。

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