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Synthesis and characterization of novel poly(propylene terephthalate-co-adipate) biodegradable random copolyesters

机译:新型聚对苯二甲酸丙二醇酯-己二酸酯可生物降解的无规共聚酯的合成与表征

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Novel aromatic/aliphatic poly(propylene terephthalate-co-adipate) (PPTAd) random copolymers were synthesized. Copolymer composition varied over the whole range from that of neat poly(propylene terephthalate) (PPT) to that of neat poly(propylene adipate) (PPAd). Interestingly, the copolymers showed that they can degrade via hydrolysis, especially in presence of enzymes, even for a terephthalate content as high as 66 mol%. Thermal behaviour and solid state as well as mechanical properties were studied. In contrast to hydrolysis rates, mechanical properties increase with terephthalate content. WAXD patterns indicate some extent of co-crystallization of both comonomers, especially for intermediate compositions. The thermodynamic analysis of the melting point depression showed that some portion of the adipate comonomer units participate in the formation of crystals, although the major portion of them is rejected from crystals and remain in the amorphous phase. WAXD patterns showed that even for a 60 mol% or more adipate content, the copolymers form PPT like crystals. Thus, the amorphous phase is enriched in adipate units, as is also shown by a lowering of the glass transition temperature of the crystallized copolymer samples, compared to glassy ones. Finally, multiple melting behaviour of the melt crystallized copolymer samples, as well as, banded spherulitic morphology was observed.
机译:合成了新型的芳香族/脂肪族聚对苯二甲酸丙二酯(PPTAd)无规共聚物。共聚物的组成在从纯聚对苯二甲酸丙二酯(PPT)到纯聚己二酸丙二酯(PPAd)的整个范围内变化。有趣的是,该共聚物表明它们可以通过水解降解,特别是在酶的存在下,即使对苯二甲酸酯含量高达66mol%。研究了热行为和固态以及机械性能。与水解速率相反,机械性能随对苯二甲酸酯含量的增加而增加。 WAXD模式表明两种共聚单体都有一定程度的共结晶,特别是对于中间组合物。熔点降低的热力学分析表明,己二酸酯共聚单体单元的某些部分参与了晶体的形成,尽管它们的大部分被晶体排斥并保留在非晶相中。 WAXD图谱表明,即使己二酸酯含量为60 mol%或更高,该共聚物仍会形成PPT状晶体。因此,非晶态相富集了己二酸酯单元,这也表明,与玻璃态相比较,结晶共聚物样品的玻璃化转变温度降低了。最后,观察到熔融结晶的共聚物样品的多重熔融行为以及带状球状形态。

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