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Coaxial fiber supercapacitor using all-carbon material electrodes

机译:使用全碳材料电极的同轴纤维超级电容器

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摘要

We report a coaxial fiber supercapacitor, which consists of carbon microfiber bundles coated with multiwalled carbon nanotubes as a core electrode and carbon nanofiber paper as an outer electrode. The ratio of electrode volumes was determined by a half-cell test of each electrode. The capacitance reached 6.3 mF cm~(-1) (86.8 mF cm~(-2)) at a core electrode diameter of 230 μm and the measured energy density was 0.7 μWh cm~(-1) (9.8 μWh cm~(-2)) at a power density of 13.7 μW cm~(-1) (189.4 μW cm~(-2)), which were much higher than the previous reports. The change in the cyclic voltammetry characteristics was negligible at 180 bending, with excellent cycling performance. The high capacitance, high energy density, and power density of the coaxial fiber supercapacitor are attributed to not only high effective surface area due to its coaxial structure and bundle of the core electrode, but also all-carbon materials electrodes which have high conductivity. Our coaxial fiber supercapacitor can promote the development of textile electronics in near future.
机译:我们报告了一种同轴纤维超级电容器,它由涂有多壁碳纳米管的碳微纤维束作为芯电极,而碳纳米纤维纸作为外电极组成。通过每个电极的半电池测试确定电极体积的比率。在中心电极直径为230μm时,电容达到6.3 mF cm〜(-1)(86.8 mF cm〜(-2)),测得的能量密度为0.7μWhcm〜(-1)(9.8μWhcm〜(- 2))的功率密度为13.7μWcm〜(-1)(189.4μWcm〜(-2)),远高于以前的报道。循环伏安特性的变化在180弯曲时可忽略不计,具有出色的循环性能。同轴纤维超级电容器的高电容,高能量密度和功率密度不仅归因于由于其同轴结构和芯电极束而具有的高有效表面积,而且归因于具有高导电率的全碳材料电极。我们的同轴光纤超级电容器可以在不久的将来促进纺织电子的发展。

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