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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Morphology, structure and properties of conductive PS/CNT nanocomposite electrospun mat
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Morphology, structure and properties of conductive PS/CNT nanocomposite electrospun mat

机译:导电PS / CNT纳米复合电纺垫的形貌,结构与性能

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The morphologies and properties of Polystyrene (PS)/Carbon Nanotube (CNT) conductive electrospun mat were studied in this paper. Nanocomposite fibers were obtained through electrospinning of PS/Di-Methyl Formamide (DMF) solution containing different concentrations and types of CNTs. The dispersion condition of CNTs was correlated to morphologies and properties of nanocomposite fibers. A copolymer as an interfacial agent (SBS, Styrene-butadiene-styrene type) was used to modify the dispersion of CNTs in PS solution before electrospinning. The results showed that the presence of the copolymer significantly enhances CNT dispersion. The fiber diameters varied between 200 nm and 800 nm depending on CNT type, polymer concentration and copolymer. The final morphological study of the fibers showed that CNT addition caused a decrease in beads formation along fiber axis before percolation threshold. However, addition of CNTs above percolation increased the beads formation, depending on the dispersion condition. The presence of SBS modified the dispersion, reduced the fiber diameter and the number of bead structures. Electrical conductivity measurements on nanocomposite mats of 15-300 mu m in thickness showed an electrical percolation threshold around 4 wt% MWCNT; while the samples containing SBS showed higher values of conductivities below percolation compared to the samples with no compatibilizer. Enhancement in mechanical properties was observed by the addition of CNTs at concentrations below percolation.
机译:研究了聚苯乙烯(PS)/碳纳米管(CNT)导电电纺垫的形貌和性能。纳米复合纤维是通过静电纺丝包含不同浓度和类型的CNT的PS /二甲基甲酰胺(DMF)溶液获得的。碳纳米管的分散条件与纳米复合纤维的形貌和性能有关。在电纺丝之前,使用共聚物作为界面剂(SBS,苯乙烯-丁二烯-苯乙烯型)来改性CNT在PS溶液中的分散性。结果表明,共聚物的存在显着增强了CNT的分散性。纤维直径在200 nm至800 nm之间变化,具体取决于CNT类型,聚合物浓度和共聚物。纤维的最终形态研究表明,在渗流阈值之前,添加CNT导致沿纤维轴的珠子形成减少。然而,根据分散条件,在渗滤以上添加CNT会增加珠粒的形成。 SBS的存在改变了分散性,减少了纤维直径和珠结构的数量。在厚度为15-300微米的纳米复合材料垫上的电导率测量结果表明,电渗流阈值为MWCNT约4 wt%。与不含增容剂的样品相比,含SBS的样品在渗滤以下的电导率值更高。通过以低于渗滤的浓度添加CNT,观察到机械性能的增强。

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