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Synthesis of polylactide/clay nanocomposites by in situ intercalative polymerization in supercritical carbon dioxide

机译:超临界二氧化碳中原位插入聚合法合成聚丙交酯/粘土纳米复合材料

摘要

Polylactide (PLA)/clay nanocomposites have been prepared by in situ ring-opening polymerization in supercritical carbon dioxide. Depending on the type of organoclay used, polylactide chains can be grafted onto the clay surface, leading to an exfoliated morphology. Nanocomposites with high clay contents (30–50 wt.%), called masterbatches, have also been successfully prepared and were recovered as fine powders thanks to the unique properties of the supercritical fluid. Dilution of these masterbatches into commercial l-polylactide by melt blending has led to essentially exfoliated nanocomposites containing 3 wt.% of clay. The mechanical properties of these materials have been assessed by flexion and impact tests. Significant improvements of stiffness and toughness have been observed for the PLA/clay nanocomposites compared to the pure matrix, together with improved impact resistance.
机译:聚乳酸(PLA)/粘土纳米复合材料已通过在超临界二氧化碳中进行原位开环聚合反应制得。根据所用有机粘土的类型,可以将聚丙交酯链接枝到粘土表面上,从而导致剥落的形态。具有高粘土含量(30–50 wt。%)的纳米复合材料(称为母料)也已成功制备,并由于超临界流体的独特性能而被回收为细粉。通过熔融共混将这些母料稀释成市售的l-聚丙交酯,导致含有3wt。%的粘土的基本上剥离的纳米复合材料。这些材料的机械性能已通过屈曲和冲击测试进行了评估。与纯基质相比,PLA /粘土纳米复合材料的刚度和韧性得到了显着改善,并且抗冲击性得到了改善。

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