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Top-Down Process Based on Electrospinning, Twisting, and Heating for Producing One-Dimensional Carbon Nanotube Assembly

机译:基于静电纺丝,扭曲和加热的自顶向下过程,用于生产一维碳纳米管组件。

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Multiwalled carbon nanotube (MWNT)/poly(vinyl butyral) (PVB) composite nanofibers were prepared by electrospinning, successive twisting and heat treatment. The MWNTs were highly oriented in an electrified thin jet during electrospinning. The heat treatment of the twisted electrospun nanofiber yarns produced the characteristics of the CNT in the composite nanofiber yarns and enhanced thek electrical properties, mechanical properties, and thermal properties. The electrical conductivity of the heated yarn was significandy enhanced and showed the maximum value of 154 S cm~(-1) for the yarn heated at 400 °C. It is an order of magnitude higher than other electrospun CNT composite materials. These results demonstrated that the novel top-down process based on electrospinning, twisting, and heat treatment provide a promising option for simple and large-scale manufacture of CNT assemblies.
机译:通过电纺,连续加捻和热处理制备了多壁碳纳米管(MWNT)/聚乙烯醇缩丁醛(PVB)复合纳米纤维。在静电纺丝过程中,MWNT在带电细喷束中高度取向。扭曲的电纺纳米纤维纱的热处理产生了复合纳米纤维纱中CNT的特性,并增强了电性能,机械性能和热性能。加热后的纱线的电导率显着提高,在400°C下加热时,其最大值达到154 S cm〜(-1)。它比其他电纺CNT复合材料高一个数量级。这些结果表明,基于静电纺丝,扭曲和热处理的新颖的自上而下的工艺为简单而大规模的CNT组件制造提供了有希望的选择。

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