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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of carbon nanotubes localization and transfer on electrical conductivity in PA66/(PS/PPE)/CNTs nanocomposites
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Influence of carbon nanotubes localization and transfer on electrical conductivity in PA66/(PS/PPE)/CNTs nanocomposites

机译:碳纳米管的定位和转移对PA66 /(PS / PPE)/ CNTs纳米复合材料电导率的影响

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The localization and transfer of carbon nanotubes (CNTs) in PA66/(PS/PPE)/CNTs nanocomposites were investigated using several methods including TEM/EDS techniques, surface energy and wetting coefficient calculations, electrical conductivity measurements, and rheological analysis. The CNTs were found to be dispersed preferentially in the polyamide 66 (PA66) phase and not in the miscible polystyrene (PS)/poly(phenylene ether) (PPE) blend phase because CNTs have a higher affinity for PA66. The electrical conductivity of the PA66/(PS/PPE)/CNTs nanocomposites significantly increased compared to the PA66/ CNTs nanocomposites at the same CNT loading. The nanocomposites were prepared with three different compounding procedures. The nanocomposites prepared with sequence III (premixing PS/PPE and CNTs, and then blending the (PS/PPE)/CNTs with PA66) yielded a better CNT dispersion that resulted in a higher electrical conductivity. The CNT dispersion was determined by TEM and rheological analysis. Additionally, the nonlinear-linear viscoelastic ratio (NLR) was used to quantify the degree of CNT dispersion. Because the CNTs initially dispersed in the unfavorable PS/PPE phase were transferred as individual rods into the preferred PA66 phase during the second step of compounding sequence III, the nanocomposite prepared with sequence III had a higher NLR value, that is, a better CNT dispersion compared to the other nanocomposite prepared with different compounding sequences. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用几种方法研究了碳纳米管在PA66 /(PS / PPE)/ CNTs纳米复合材料中的定位和转移,包括TEM / EDS技术,表面能和润湿系数计算,电导率测量以及流变学分析。发现CNT优先分散在聚酰胺66(PA66)相中,而不优选分散在可混溶的聚苯乙烯(PS)/聚苯醚(PPE)共混相中,因为CNT对PA66具有更高的亲和力。与在相同CNT负载下的PA66 / CNTs纳米复合材料相比,PA66 /(PS / PPE)/ CNTs纳米复合材料的电导率显着提高。用三种不同的混合方法制备了纳米复合材料。用顺序III(预混合PS / PPE和CNT,然后将(PS / PPE)/ CNT与PA66混合)制备的纳米复合材料产生了更好的CNT分散体,从而导致了更高的电导率。通过TEM和流变分析确定CNT分散体。此外,非线性-线性粘弹性比(NLR)用于量化CNT的分散程度。因为最初在不良PS / PPE相中分散的CNT在复合序列III的第二步过程中作为单个棒转移到了优选的PA66相中,所以用序列III制备的纳米复合材料的NLR值更高,也就是说,CNT分散性更好与使用不同配合顺序制备的其他纳米复合材料相比。 (C)2015 Elsevier Ltd.保留所有权利。

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