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Furfuryl Alcohol and Lactic Acid Blends: Homo- or Co-Polymerization?

机译:糠醇和乳酸的混合物:均聚或共聚?

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摘要

Furfuryl alcohol (FA) and lactic acid (LA) are two of the most interesting biomolecules, easily obtainable from sugars and hence extremely attractive for green chemistry solutions. These substances undergo homopolymerization and they have been rarely considered for copolymerization. Typically, FA homopolymerizes exothermically in an acid environment producing inhomogeneous porous materials, but recent studies have shown that this reaction can be controlled and therefore we have implemented this process to trigger the copolymerization with LA. The mechanical tests have shown that the blend containing small amount of FA were rigid and the fracture showed patterns more similar to the one of neat polyfurfuryl alcohol (PFA). This LA-rich blend exhibited higher chloroform and water resistances, while thermal analyses (TG and DSC) also indicated a higher furanic character than expected. These observations suggested an intimate interconnection between precursors which was highlighted by the presence of a small band in the ester region of the solid state C–NMR, even if the FT-IR did not evidence any new signal. These studies show that these bioplastics are basically constituted of PLA and PFA homopolymers with some small portion of covalent bonds between the two moieties.
机译:糠醇(FA)和乳酸(LA)是两种最有趣的生物分子,可以轻松地从糖中获得,因此对绿色化学溶液极具吸引力。这些物质均聚,因此很少考虑共聚。通常,FA在酸性环境中会发生放热均热反应,从而产生不均匀的多孔材料,但最近的研究表明该反应可以控制,因此我们已实施该方法来引发与LA的共聚反应。力学测试表明,含有少量FA的共混物是硬质的,断裂表现出与纯聚糠醇(PFA)相似的模式。这种富含LA的混合物显示出更高的氯仿和耐水性,而热分析(TG和DSC)也显示出比预期更高的呋喃特性。这些观察结果表明前体之间存在紧密的相互联系,即使FT-IR没有发现任何新信号,固态C-NMR的酯区中也存在一个小谱带,这突出了这一点。这些研究表明,这些生物塑料基本上由PLA和PFA均聚物组成,两个部分之间的共价键很小。

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