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Structure and Properties of Nanocomposites based on PTT-block-PTMO Copolymer and Graphene Oxide prepared by in Situ Polymerization

机译:原位聚合制备基于PTT-嵌段-PTMO共聚物和氧化石墨烯的纳米复合材料的结构与性能

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摘要

Poly(trimethylene terephthalate-block-tetramethylene oxide) (PTT-PTMO) copolymer/graphene oxide nanocomposites were prepared by in situ polymerization. From the SEM and TEM images of PTT-PTMO/GO nanocomposite, it can be seen that GO sheets are clearly well-dispersed in the PTT-PTMO matrix. TEM images also showed that graphene was well exfoliated into individual sheets, suggesting that in situ polymerization is a highly efficient method for preparing nanocomposites. The influence of GO on the two-phase structure, melt viscosity and mechanical properties of PTT-PTMO block copolymer was examined by using DSC, ARES rheometer and tensile tests. The DSC results imply that the introduction of GO did not affect the glass transition temperature of PTMO-rich soft phase, melting temperature of PTT hard phase and degree of crystallinity of the nanocomposites. As the graphene oxide loading in the nanocomposites increase, the enhanced Young’s modulus and yield stress was observed. The tensile strength slightly increased with the increase of GO from 0 to 0.5 wt% when elongation at break was higher or comparable to the value of neat PTT-PTMO copolymer.
机译:通过原位聚合制备聚对苯二甲酸丙二醇酯-嵌段-四亚甲基氧化物(PTT-PTMO)共聚物/氧化石墨烯纳米复合材料。从PTT-PTMO / GO纳米复合材料的SEM和TEM图像中可以看出,GO薄片明显很好地分散在PTT-PTMO基质中。 TEM图像还表明,石墨烯被充分剥落成单个薄片,表明原位聚合是制备纳米复合材料的高效方法。用DSC,ARES流变仪和拉伸试验研究了GO对PTT-PTMO嵌段共聚物的两相结构,熔体粘度和力学性能的影响。 DSC结果表明GO的引入不影响富含PTMO的软相的玻璃化转变温度,PTT硬相的熔融温度和纳米复合材料的结晶度。随着纳米复合材料中氧化石墨烯的负载增加,观察到杨氏模量和屈服应力增强。当断裂伸长率更高或与纯PTT-PTMO共聚物的值相当时,抗拉强度随GO从0至0.5wt%的增加而略微增加。

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