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Degradation Of Poly(ethylene Terephthalate)/clay Nanocomposites During Melt Extrusion: Effect Of Clay Catalysis And Chain Extension

机译:熔融挤出过程中聚对苯二甲酸乙二酯/粘土纳米复合材料的降解:粘土催化和扩链的影响

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摘要

Organoclays with various contents of hydroxyl groups and absorbed ammonium were prepared and compounded with poly(ethylene terephthalate) (PET), forming PET/clay nanocomposites via melt extrusion. Dilute solution viscosity techniques were used to evaluate the level of molecular weight of PET/clay nanocomposites. Actually, a significant reduction in PET molecular weight was observed. The level of degradation depended on both the clay structure and surfactant chemistry in organoclays. The composites, based on clay with larger amount of hydroxyl groups on the edge of clay platelets, experienced much more degradation, because the hydroxyl groups acted as Bronsted acidic sites to accelerate polymer degradation. Furthermore, organoclays with different amounts of absorbed ammonium led to different extents of polymer degradation, depending upon the acidic sites produced by the Hofmann elimination reaction of ammonium. In addition, the composite with better clay dispersion state, which was considered as an increasing amount of clay surface and ammonium exposed to the PET matrix, experienced polymer degradation more seriously. To compensate for polymer degradation during melt extrusion, pyromellitic dianhydride (PMDA) was used as chain extender to increase the intrinsic viscosity of polymer matrix; more importantly, the addition of PMDA had little influence on the clav exfoliation state in PET/clav nanocomoosites.
机译:制备具有各种羟基含量和吸收的铵的有机粘土,并与聚对苯二甲酸乙二酯(PET)混合,通过熔融挤出形成PET /粘土纳米复合材料。稀溶液粘度技术用于评估PET /粘土纳米复合材料的分子量水平。实际上,观察到PET分子量的显着降低。降解程度取决于有机粘土中的粘土结构和表面活性剂化学性质。基于粘土薄片边缘上具有大量羟基的粘土的复合材料经历了更多的降解,因为羟基充当布朗斯台德酸性位点以加速聚合物降解。此外,取决于铵的霍夫曼消除反应产生的酸性部位,具有不同量的吸收的铵的有机粘土导致聚合物降解的程度不同。此外,具有更好的粘土分散状态的复合材料(被认为是增加的粘土表面和暴露于PET基体的铵的数量)更严重地经历了聚合物降解。为了补偿熔融挤出过程中的聚合物降解,均苯四甲酸二酐(PMDA)被用作增链剂,以增加聚合物基体的特性粘度。更重要的是,添加PMDA对PET /克拉夫纳米复合材料中的克拉夫脱落状态几乎没有影响。

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