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Biobased copolyesters: synthesis, crystallization behavior, thermal and mechanical properties of poly(ethylene glycol sebacate-co-ethylene glycol 2,5-furan dicarboxylate)

机译:生物基共聚酯:聚(癸二酸乙二醇酯- co <​​/ em>-乙二醇2,5-呋喃二羧酸酯)的合成,结晶行为,热和机械性能

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摘要

A series of biobased copolyesters, poly(ethylene sebacate-co-ethylene 2,5-furandicarboxylate) (PESF), were synthesized from available biobased ethylene glycol (EG), sebacic acid (SA) and 2,5-furandicarboxylic acid (FDCA) through a two-step melt polycondensation method. The composition, molecular weight and its distribution, crystal structure, and crystallization behavior of PESFs were investigated by 1H NMR, GPC, WAXD, and DSC methods, respectively. Tensile properties were also evaluated. While increasing the content of the FDCA unit, the glass transition temperatures of PESFs increased and the crystallization rates of PESFs decreased. Compared with poly(ethylene sebacate) (PES), PESF20 showed two melting peaks due to the formation of secondary crystals (small and imperfects crystals) caused by the incorporation of FDCA during the isothermal crystallization process. POM data showed that the nucleation density of PESF10 and PESF20 increased and the size of spherulites decreased due to the chain irregularity caused by randomization distribution with the introduction of FDCA. However, the crystal structure remained unchanged. Ring-banded spherulites were not detected for PESF20 in a wide temperature range (28–44 °C) as the incorporation of FDCA can restrict lamellar twisting and scrolling of PES segments. The thermal transition and mechanical properties of copolymers are tunable with the composition.
机译:由可利用的生物基乙二醇(EG),癸二酸(SA)和2,合成了一系列生物基共聚酯,即癸二酸亚乙酯- co <​​/ em>-乙烯2,5-呋喃二甲酸乙二醇酯(PESF)。 5-呋喃二甲酸(FDCA)通过两步熔融缩聚方法。用 1 HNMR,GPC,WAXD和DSC方法分别研究了PESF的组成,分子量及其分布,晶体结构和结晶行为。还评估了拉伸性能。当增加FDCA单元的含量时,PESF的玻璃化转变温度升高并且PESF的结晶速率降低。与聚癸二酸乙二醇酯(PES)相比,PESF20由于在等温结晶过程中掺入了FDCA而形成二级晶体(小的晶体和不完美的晶体),因此显示出两个熔融峰。 POM数据表明,由于FDCA的引入,随机分布导致链不规则,PESF10和PESF20的成核密度增加,球晶尺寸减小。然而,晶体结构保持不变。在很宽的温度范围(28–44°C)中,未检测到PESF20的环带球晶,因为掺入FDCA可以限制PES段的层状扭曲和滚动。共聚物的热转变和机械性能可通过组合物调节。

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