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Synthesis and properties of novel poly(ethylene succinate-co-decamethylene succinate) copolymers

机译:新型聚(琥珀酸乙烯酯-共-癸二琥珀酸酯)共聚物的合成与性能

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In this work, a series of novel poly(ethylene succinate-co-decamethylene succinate) (PEDS) copolymers with different decamethylene succinate (DS) contents and their homopolymer poly(ethylene succinate) (PES) were synthesized by a two-stage melt polycondensation method. The thermal stability, crystal structure, crystallization behavior, mechanical properties, and hydrolytic degradation of PEDS were investigated with various techniques and compared with those of PES. The PEDS copolyesters have the similar thermal stability and crystal structure as PES, but the crystallinity values of PEDS are smaller than that of PES. The values of the glass transition temperature, melting temperature, and melt crystallization peak temperature of PEDS decrease apparently, relative to PES. The elongation at break values of PEDS were improved significantly with the presence of the DS units, while the yield strength and Young's modulus values become smaller compared with those of PES. The hydrolytic degradation rates of PEDS are slower than that of PES, regardless of the DS contents. When the DS content increases to 18 mol%, the sample has a faster hydrolytic degradation rate than other copolyesters.
机译:在这项工作中,通过两步熔融缩聚反应,合成了一系列具有不同癸二琥珀酸酯(DS)含量的一系列新型聚琥珀酸乙烯-共癸二琥珀酸琥珀酸酯(PEDS)共聚物及其均聚物聚琥珀酸乙烯酯(PES)。方法。用各种技术研究了PEDS的热稳定性,晶体结构,结晶行为,机械性能和水解降解,并与PES进行了比较。 PEDS共聚酯具有与PES相似的热稳定性和晶体结构,但PEDS的结晶度值小于PES。相对于PES,PEDS的玻璃化转变温度,熔融温度和熔融结晶峰值温度明显降低。与DSS相比,存在DS单元时,PEDS的断裂伸长率值显着提高,而屈服强度和杨氏模量值则变小。无论DS含量如何,PEDS的水解降解速率都比PES慢。当DS含量增加到18mol%时,样品具有比其他共聚酯更快的水解降解速率。

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