Yang Haidong, Feng Shiwei, Qiu Zhaobin
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Polymers (Basel). 2025 Jul 21;17(14):1997. doi: 10.3390/polym17141997.
In order to increase the toughness of poly(hexamethylene furandicarboxylate) (PHF) without severely compromising its strength at break, novel biobased poly(hexamethylene furandicarboxylate--hexamethylene thiophenedicarboxylate) (PHFTh) copolyesters and their parent homopolyesters, PHF and poly(hexamethylene thiophenedicarboxylate), were successfully synthesized through melt polycondensation in this research. Despite the variation in their compositions, all the PHFTh copolyesters exhibited excellent thermal stability. The PHFTh copolyesters were semicrystalline in nature, showing the lowest eutectic melting points and isodimorphism behaviors over the whole composition range. As the hexamethylene thiophenedicarboxylate (HTh) unit content increased, the glass transition temperature of the copolyesters gradually decreased, while the chain mobility was accordingly enhanced. Therefore, the introduction of the HTh unit significantly increased the elongation at break of the PHFTh, achieving a balance between strength and toughness. The biobased PHFTh copolyesters showed tunable thermal behaviors and excellent mechanical properties and may find potential end uses from a practical application viewpoint.
为了提高聚(呋喃二甲酸己二酯)(PHF)的韧性,同时又不严重损害其断裂强度,本研究通过熔融缩聚成功合成了新型生物基聚(呋喃二甲酸己二酯 - 噻吩二甲酸己二酯)(PHFTh)共聚酯及其母体均聚酯PHF和聚(噻吩二甲酸己二酯)。尽管它们的组成有所不同,但所有的PHFTh共聚酯都表现出优异的热稳定性。PHFTh共聚酯本质上是半结晶的,在整个组成范围内显示出最低的共熔熔点和同构现象。随着噻吩二甲酸己二酯(HTh)单元含量的增加,共聚酯的玻璃化转变温度逐渐降低,同时链段流动性相应增强。因此,HTh单元的引入显著提高了PHFTh的断裂伸长率,实现了强度和韧性之间的平衡。从实际应用的角度来看,生物基PHFTh共聚酯表现出可调节的热行为和优异的机械性能,可能具有潜在的最终用途。