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Characterization of carbon nanotube- and organoclay-filled polypropylene/poly(butylene succinate) blend-based nanocomposites with enhanced rigidity and electrical conductivity

机译:具有增强刚性和电导率的碳纳米管和有机粘土 - 填充聚丙烯/聚(丁烯琥珀酸)共混物的碳纳米管和有机粘土 - 填充聚丙烯/聚(丁烯琥珀酸酯)的特征

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摘要

In this study, immiscible polypropylene/poly(butylene succinate) (PP/PBS) blend-based nanocomposites were successfully prepared using an internal mixer. Carbon nanotube (CNT)/organo-montmorillonite (15A) and maleated PP (PPgMA) served as the reinforcing nanofillers and compatibilizer, respectively. Scanning electron microscopy results showed that PPgMA played an efficient role as compatibilizer for reducing the dispersed domain size of PBS in the blend. The added CNT was randomly distributed within the PP and PBS phases, whereas 15A was selectively located in the PBS domain. Differential scanning calorimetry results confirmed the nucleation effect of CNT on the PP/PBS crystallization, but 15A addition only facilitated the PBS crystallization. Thermogravimetric analysis revealed that CNT and 15A both enhanced the thermal stability of the blend under air environment. The rheological property measurements confirmed the significant change in microstructure of composites through developing the pseudo-network structure with CNT and/or 15A additions. The Young's modulus (YM) of PP/PBS blend increased evidently with the inclusion of CNT. The incorporation of 2.5 phr CNT evidently increased the YM by approximately 243% compared with that of neat PBS. The electrical resistivity of the samples drastically reduced with the addition of CNT up to 10 orders of drop at a 3-phr CNT loading. The electrical percolation was constructed at a CNT content of 0.5 phr.
机译:在该研究中,使用内部混合器成功制备不混溶的聚丙烯/聚(丁二酸酯)(PP / PBS)混合物的纳米复合材料。碳纳米管(CNT)/有机型蒙脱石(15A)和MALEALED PP(PPGMA)分别用作增强纳米填料和增容剂。扫描电子显微镜结果表明,PPGMA作为增容剂的高效作用,以减少混合物中PBS的分散域尺寸。将添加的CNT随机分布在PP和PBS相中,而15A选择性地位于PBS结构域中。差分扫描量热法结果证实了CNT在PP / PBS结晶上的成核效果,但仅增加了PBS结晶。热重分析显示CNT和15A均增强了空气环境下混合物的热稳定性。流变性能测量证实了复合材料微观结构的显着变化,通过用CNT和/或15A的添加方式显影伪网络结构。在包含CNT的情况下,PP / PBS混合物的杨氏模量(YM)显然增加。与纯PBS相比,2.5phr CNT的掺入明显增加了大约243%。随着3-PHR CNT载荷的增加,样品的电阻率大大降低了高达10个下降的10个液滴。电滤液以0.5phr的CNT含量构建。

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