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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Vertically Aligned Carbon Nanotubes on Carbon Nanofibers: A Hierarchical Three-Dimensional Carbon Nanostructure for High-Energy Flexible Supercapacitors
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Vertically Aligned Carbon Nanotubes on Carbon Nanofibers: A Hierarchical Three-Dimensional Carbon Nanostructure for High-Energy Flexible Supercapacitors

机译:碳纳米纤维上的垂直排列的碳纳米管:用于高能柔性超级电容器的分层三维碳纳米结构

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摘要

Hierarchical structures enable high-performance power sources. We report here the preparation of vertically aligned carbon nanotubes directly grown on carbon nanofibers (VACNTs/CNFs) by combining electrospinning with pyrolysis technologies. The structure and morphology of VACNTs/CNFs could be precisely tuned and controlled by adjusting the percentage of reactants. The desired VACNTs/CNFs could not only possess high electric conductivity for efficient charge transport but could also increase surface area for accessing more electrolyte ions. When using an ionic liquid electrolyte, VACNTs/CNFs-based electric double layer (EDL) flexible supercapacitors can deliver a high specific energy of 70.7 Wh/kg at a current density of 0.5 A/g and at 30 degrees C, and an ultrahigh-energy density of 98.8 Wh/kg at a current density of 1.0 A/g and at 60 degrees C. Even after 20 000 charging/discharging cycles, the EDL capacitor still retains 97.0% of the initial capacitance. The excellent performance highlights the important role of the branched VACNTs in storing and accumulating charge and the CNF backbone in transporting charge, thereby boosting both power density and energy density.
机译:分层结构可实现高性能电源。我们在这里报告通过结合静电纺丝和热解技术,直接在碳纳米纤维(VACNTs / CNF)上生长的垂直排列的碳纳米管的制备。 VACNTs / CNFs的结构和形态可以通过调节反应物的百分比来精确调节和控制。所需的VACNT / CNF不仅可以具有高电导率以进行有效的电荷传输,而且可以增加表面积以获取更多的电解质离子。当使用离子液体电解质时,基于VACNTs / CNFs的双电层(EDL)柔性超级电容器可以在0.5 A / g的电流密度和30摄氏度的温度下提供70.7 Wh / kg的高比能,以及超高的在1.0 A / g的电流密度和60摄氏度的环境下,其能量密度为98.8 Wh / kg。即使经过2万次充电/放电循环,EDL电容器仍保留了97.0%的初始电容。出色的性能凸显了分支VACNT在电荷存储和累积中的重要作用,以及CNF主干在电荷传输中的重要作用,从而提高了功率密度和能量密度。

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