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Synthesis, characterization of star-shaped copolymers of l-lactide and epoxidized soybean oil

机译:丙交酯与环氧大豆油星形共聚物的合成,表征

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Biodegradable star-shaped PLLA–ESO copolymers were synthesized by the bulk copolymerization of l-lactide (l-LA) and epoxidized soybean oil (ESO) with stannous octanoate as the catalyst. Effects of molar ratios of monomer to catalyst, and various amounts of ESO on copolymerization were studied. The resulting copolymers were characterized by FTIR, 1H NMR, GPC, etc., which confirmed the successful synthesis of star-shaped copolymers of l-LA and ESO. The thermal and mechanical properties of samples were also investigated by means of DSC, TGA and tensile testing. The results showed that the PLLA–ESO copolymers possed lower glass transition temperature, melting point, crystallinity, and maximum decomposition temperature than those of neat polylactide. Tensile testing demonstrated that PLLA–ESO copolymer had better ductility than linear PLLA. It was also found that the amount of catalyst almost had no influence on the weight average molecular weight of PLLA–ESO copolymers, but which could be controlled by variation of molar ratios of l-LA to ESO.
机译:可生物降解的星形PLLA-ESO共聚物是通过以辛酸亚锡为催化剂,将l-丙交酯(l-LA)和环氧化大豆油(ESO)进行本体共聚而合成的。研究了单体与催化剂的摩尔比以及不同量的ESO对共聚的影响。所得共聚物通过FTIR,1 H NMR,GPC等进行表征,证实了1-LA和ESO星形共聚物的成功合成。还通过DSC,TGA和拉伸试验研究了样品的热和机械性能。结果表明,PLLA-ESO共聚物的玻璃化转变温度,熔点,结晶度和最高分解温度均低于纯聚丙交酯。拉伸测试表明,PLLA-ESO共聚物比线性PLLA具有更好的延展性。还发现催化剂的量对PLLA-ESO共聚物的重均分子量几乎没有影响,但是可以通过改变1-LA与ESO的摩尔比来控制。

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