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ELECTROCONDUCTIVE PET/SWNT FILMS BY SOLUTION CASTING

机译:通过溶液铸造导电PET / SWNT薄膜

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The market for electrically conductive polymers is rapidly growing, and an emerging pathway for attaining these materials is via polymer-carbon nanotube (CNT) nanocomposites, because of the superior properties of CNTs. Due to their excellent electrical properties and anisotropic magnetic susceptibility, we expect CNTs could be easily aligned to maximize their effectiveness in imparting electrical conductivity to the polymer matrix. Single-walled carbon nanotubes (SWNT) were dispersed in a polyethylene terephthalate (PET) matrix by solution blending then cast onto a glass substrate to create thin, flexible films. Various SWNT loading concentrations were implemented (0.5, 1.0, and 3.0 wt. percent) to study the effect of additive density. The processing method was repeated to produce films in the presence of magnetic fields (3 and 9.4 Tesla). The SWNTs showed a high susceptibility to the magnetic field and were effectively aligned in the PET matrix. The alignment was characterized with Raman spectroscopy. Impedance spectroscopy was utilized to study the electrical behavior of the films. Concentration and dispersion seemed to play very important roles in improving electrical conductivity, while alignment played a secondary and less significant role. The most interesting result proved to be the effect of a magnetic field during processing. It appears that a magnetic field may improve dispersion of unmodified SWNTs, which seems to be more important than alignment. It was concluded that SWNTs offer a good option as conductive, nucleating filler for electroconductive polymer applications, and the utilization of a magnetic field may prove to be a novel method for CNT dispersion that could lead to improved nanocomposite materials.
机译:导电聚合物的市场正在快速生长,并且用于获得这些材料的新出现途径是通过聚合物 - 碳纳米管(CNT)纳米复合材料,因为CNT的优异性质。由于它们出色的电性能和各向异性磁化率,我们期望CNT可以容易地对准,以最大化其在赋予聚合物基质的电导率的有效性。通过溶液混合将单壁碳纳米管(SWNT)分散在聚对苯二甲酸乙二醇酯(PET)基质中,然后浇铸到玻璃基板上以产生薄,柔性薄膜。实施各种SWNT装载浓度(0.5,1.0和3.0重量%)以研究添加剂密度的影响。重复处理方法以在磁场(3和9.4特斯拉)存在下产生薄膜。 SWNT对磁场表示高易感性,并且在PET基质中有效地对准。该对准以拉曼光谱表征。利用阻抗光谱学研究薄膜的电能。浓缩和分散似乎在提高导电性方面发挥着非常重要的作用,而对准发挥了次要的和较小的作用。最有趣的结果证明是磁场在加工过程中的影响。似乎磁场可以改善未改性SWNT的分散,这似乎比对准更重要。得出结论,SWNT为导电性的聚合物应用提供了一种良好的选择,磁场的利用可以证明是可以导致改进的纳米复合材料的CNT分散体的新方法。

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