首页> 外文期刊>Applied clay science >Combined effect of epoxy functionalized graphene and organomontmorillonites on the morphology, rheological and thermal properties of poly (butylenes adipate-co-terephtalate) with or without a compatibilizer
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Combined effect of epoxy functionalized graphene and organomontmorillonites on the morphology, rheological and thermal properties of poly (butylenes adipate-co-terephtalate) with or without a compatibilizer

机译:环氧官能化石墨烯和有机蒙脱土对有或没有增容剂的聚己二酸丁二酯-对-对苯二甲酸丁二醇酯的形貌,流变学和热学性能的综合影响

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In this work, clay polymer nanocomposites(CPN) with simultaneous dispersion of graphene and organomontmorillonites (OMt) in a poly (butylene adipate-co-terephthalate) (PBAT) biodegradable matrix were prepared, using the melt-blending technique. Two different OMt were used non polar Cloisite15A and polar Cloisite30B with a composition of 3 mass% as well as epoxy functionalized graphene (EFG) with different compositions (1, 3, 5 mass%). The morphology and thermal properties of OMt/PBAT, EFG/PBAT and OMt-EFG/PBAT nanocomposites were studied. A compatibilizing agent (PBATgMA) was elaborated by grafting maleic anhydride on PBAT chains. The effect of incorporation of this compatibilizer on the different nanofillers dispersion in PBAT matrix was studied. The structure of the nanofillers/PBAT nanocomposites was examined using X-ray diffraction analysis and transmission electron microscopy (TEM). The co-addition of EFG with OMt allowed a better dispersion of these nanofillers and more intercalated structures were obtained. The rheological results showed an increase of the storage modulus G' in the different nanofillers/PBAT nanocomposites, particularly after the co-addition of OMt and EFG. The thermal properties evaluated by TGA were sensibly improved by the association of these nanofillers. From all these results, it can be speculated that a synergism phenomenon between graphene and OMt was produced in the PBAT matrix. However, this phenomenon was reduced after the addition of PBATgMA compatibilizer, probably because of repulsive interactions were produced between this compatibilizing agent and the epoxy functionalized graphene.
机译:在这项工作中,使用熔融共混技术,制备了同时将石墨烯和有机蒙脱石(OMt)分散在聚己二酸丁二醇酯-对苯二甲酸对苯二甲酸酯(PBAT)可生物降解基质中的粘土聚合物纳米复合材料(CPN)。使用两种不同的OMt,其具有3质量%的组成的非极性Cloisite15A和极性Cloisite30B以及具有不同组成(1、3、5质量%)的环氧官能化石墨烯(EFG)。研究了OMt / PBAT,EFG / PBAT和OMt-EFG / PBAT纳米复合材料的形貌和热学性质。通过将马来酸酐接枝到PBAT链上来制备相容剂(PBATgMA)。研究了这种增容剂的加入对不同纳米填料在PBAT基质中分散的影响。使用X射线衍射分析和透射电子显微镜(TEM)检查了纳米填料/ PBAT纳米复合材料的结构。 EFG与OMt的共添加可以使这些纳米填料更好地分散,并获得更多的嵌入结构。流变结果表明,在不同的纳米填料/ PBAT纳米复合材料中,储能模量G'有所增加,特别是在OMt和EFG共同添加后。这些纳米填料的结合显着改善了TGA评估的热性能。从所有这些结果中,可以推测出在PBAT基质中产生了石墨烯和OMt之间的协同现象。但是,添加PBATgMA增容剂后,这种现象得以减轻,这可能是因为该增容剂与环氧官能化石墨烯之间产生了排斥相互作用。

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