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Biobased Poly(itaconic Acid-co-10-Hydroxyhexylitaconic Acid)s: Synthesis and Thermal Characterization

机译:生物基聚(衣康酸-co-10-羟基己基衣康酸)s的合成与热表征

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摘要

Renewable vinyl compounds itaconic acid (IA) and its derivative 10-hydroxyhexylitaconic acid (10-HHIA) are naturally produced by fungi from biomass. This provides the opportunity to develop new biobased polyvinyls from IA and 10-HHIA monomers. In this study, we copolymerized these monomers at different ratios through free radical aqueous polymerization with potassium peroxodisulfate as an initiator, resulting in poly(IA- -10-HHIA)s with different monomer compositions. We characterized the thermal properties of the polymers by thermogravimetric analysis (TGA) and Fourier-transform infrared spectroscopy (FT-IR). The nuclear magnetic resonance analysis and the gel permeation chromatography showed that the polymerization conversion, yield, and the molecular weights (weight-averaged w and number-averaged n) of the synthesized poly(IA- -10-HHIA)s decreased with increasing 10-HHIA content. It is suggested that the hydroxyhexyl group of 10-HHIA inhibited the polymerization. The TGA results indicated that the poly(IA- -10-HHIA)s continuously decomposed as temperature increased. The FT-IR analysis suggested that the formation of the hydrogen bonds between the carboxyl groups of IA and 10-HHIA in the polymer chains was promoted by heating and consequently the polymer dehydration occurred. To the best of our knowledge, this is the first time that biobased polyvinyls were synthesized using naturally occurring IA derivatives.
机译:可再生的乙烯基化合物衣康酸(IA)及其衍生物10-羟基己基衣康酸(10-HHIA)是由真菌从生物质中天然产生的。这为从IA和10-HHIA单体开发新的生物基聚乙烯提供了机会。在这项研究中,我们通过自由基水聚合以过氧二硫酸钾为引发剂以不同比例共聚这些单体,得到具有不同单体组成的聚(IA--10-HHIA)。我们通过热重分析(TGA)和傅立叶变换红外光谱(FT-IR)表征了聚合物的热性能。核磁共振分析和凝胶渗透色谱分析表明,合成的聚(IA--10-HHIA)s的聚合转化率,产率和分子量(重均w和数均n)随10的增加而降低。 -HHIA内容。建议10-HHIA的羟基己基抑制聚合。 TGA结果表明,随着温度升高,聚(IA--10-HHIA)连续分解。 FT-IR分析表明,通过加热促进了聚合物链中IA和10-HHIA的羧基之间氢键的形成,因此发生了聚合物脱水。据我们所知,这是首次使用天然IA衍生物合成生物基聚乙烯。

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