College of Petroleum Engineering, Applied Chemistry in Oil and Gas Fields, Yangtze University, Wuhan 430100, China.
Key Laboratory of Drilling and Production Engineering for Oil and Gas, Wuhan 430100, China.
Int J Mol Sci. 2022 Aug 11;23(16):8967. doi: 10.3390/ijms23168967.
Vanillin, as a promising aromatic aldehyde, possesses worthy structural and bioactive properties useful in the design of novel sustainable polymeric materials. Its versatility and structural similarity to terephthalic acid (TPA) can lead to materials with properties similar to conventional poly(ethylene terephthalate) (PET). In this perspective, a symmetrical dimethylated dialkoxydivanillic diester monomer (DEMV) derived from vanillin was synthesized via a direct-coupling method. Then, a series of poly(ether-ester)s were synthesized via melt-polymerization incorporating mixtures of phenyl/phenyloxy diols (with hydroxyl side-chains in the 1,2-, 1,3- and 1,4-positions) and a cyclic diol, 1,4-cyclohexanedimethanol (CHDM). The polymers obtained had high molecular weights ( = 5.3-7.9 × 10 g.mol) and polydispersity index (Đ) values of 1.54-2.88. Thermal analysis showed the polymers are semi-crystalline materials with melting temperatures of 204-240 °C, and tunable glass transition temperatures (T) of 98-120 °C. Their 5% decomposition temperature (T) varied from 430-315 °C, which endows the polymers with a broad processing window, owing to their rigid phenyl rings and trans-CHDM groups. These poly(ether-ester)s displayed remarkable impact strength and satisfactory gas barrier properties, due to the insertion of the cyclic alkyl chain moieties. Ultimately, the synergistic influence of the ester and ether bonds provided better control over the behavior and mechanism of in vitro degradation under passive and enzymatic incubation for 90 days. Regarding the morphology, scanning electron microscopy (SEM) imaging confirmed considerable surface degradation in the polymer matrices of both polymer series, with weight losses reaching up to 35% in enzymatic degradation, which demonstrates the significant influence of ether bonds for biodegradation.
香草醛作为一种有前途的芳香醛,具有有价值的结构和生物活性性质,可用于设计新型可持续聚合物材料。它的多功能性和与对苯二甲酸(TPA)的结构相似性可以导致具有类似于传统聚对苯二甲酸乙二醇酯(PET)性能的材料。在这种情况下,通过直接偶联法合成了一种源自香草醛的对称二甲氧基二烷氧基二香草酸二酯单体(DEMV)。然后,通过熔融聚合合成了一系列聚(醚酯),其中包含苯/苯氧基二醇(具有 1,2-、1,3-和 1,4-位侧链羟基)和环状二醇 1,4-环己烷二甲醇(CHDM)的混合物。得到的聚合物具有高的分子量(Mw=5.3-7.9×104g/mol)和多分散指数(Đ)值为 1.54-2.88。热分析表明,这些聚合物是半结晶材料,具有 204-240°C 的熔融温度和 98-120°C 的可调玻璃化转变温度(Tg)。它们的 5%分解温度(Td)在 430-315°C 之间变化,这使聚合物具有较宽的加工窗口,这是由于其刚性的苯基环和反式-CHDM 基团。这些聚(醚酯)表现出优异的冲击强度和令人满意的气体阻隔性能,这归因于环状烷基链的插入。最终,酯键和醚键的协同影响提供了更好的控制,可用于在被动和酶孵育 90 天的情况下体外降解的行为和机制。关于形态,扫描电子显微镜(SEM)成像证实了两个聚合物系列的聚合物基质中都有相当大的表面降解,在酶降解中重量损失高达 35%,这表明醚键对生物降解有重要影响。