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首页> 外文期刊>Polymer Testing >Morphology, rheological and crystallization behavior in non-covalently functionalized carbon nanotube reinforced poly(butylene succinate) nanocomposites with low percolation threshold
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Morphology, rheological and crystallization behavior in non-covalently functionalized carbon nanotube reinforced poly(butylene succinate) nanocomposites with low percolation threshold

机译:低渗透阈值的非共价官能化碳纳米管增强聚丁二酸丁二醇酯纳米复合材料的形貌,流变和结晶行为

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Multi-walled carbon nanotubes (CNTs) were non-covalently functionalized by surface wrapping of poly(sodium 4-styrenesulfonate) (PSS) with the aid of ultrasound. The functionalized CNTs were incorporated into poly(butylene succinate) (PBS) through solution coagulation to fabricate CNTs filled PBS nanocomposites. The morphologies of the PBS/CNT nanocomposites were studied by scanning electron microscope (SEM) and transmission electron microscope (TEM), and the effect of loading of functionalized CNT on the rheological behavior, electrical conductivity and mechanical properties of the nano composites was investigated systemically. SEM observation indicates that functionalized CNTs dispersed in PBS matrix without obvious aggregation and showed good interfacial adhesion with the PBS phase. TEM observation reveals that a CNT network was formed when the loading of CNTs increased from 0.1 to 0.3 wt%. Rheological investigation indicates the formation of a CNT network with a percolation threshold of only 03 wt%. Significant improvement in electrical conductivity occurred at CNT loading of 03 wt%, with the value of electrical conductivity increasing by six orders of magnitude compared to neat PBS. Differential scanning calorimetry indicates that the melt crystallization temperature of PBS was improved by similar to 14 degrees C with addition of only 0.05 wt% functionalized CNTs. Tensile tests indicate that both the yield strength and Young's modulus of PBS were apparently reinforced by incorporation of functionalized CNTs, while the elongation at break was reduced gradually. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多壁碳纳米管(CNTs)在超声波的辅助下通过聚(4-苯乙烯磺酸钠)(PSS)的表面包裹进行非共价功能化。通过溶液凝结将官能化的CNT掺入聚(琥珀酸丁二酯)(PBS)中以制造填充有CNT的PBS纳米复合材料。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了PBS / CNT纳米复合材料的形貌,并系统研究了官能化CNT的负载量对纳米复合材料的流变行为,电导率和力学性能的影响。 。 SEM观察表明,功能化的CNTs分散在PBS基质中,没有明显的聚集,并且与PBS相表现出良好的界面粘附性。 TEM观察表明,当CNT的负载量从0.1重量%增加至0.3重量%时,形成了CNT网络。流变学研究表明形成了具有仅为03 wt%的渗滤阈值的CNT网络。 CNT含量为03 wt%时,电导率显着提高,与纯PBS相比,电导率值增加了六个数量级。差示扫描量热法表明,仅添加0.05重量%的官能化CNT,PBS的熔融结晶温度提高了约14℃。拉伸试验表明,通过掺入官能化的CNT可以明显增强PBS的屈服强度和杨氏模量,而断裂伸长率则逐渐降低。 (C)2016 Elsevier Ltd.保留所有权利。

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