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Core-Shell Tubular Nanostructured Electrode of Hollow Carbon Nanofiber/Manganese Oxide for Electrochemical Capacitors

机译:中空碳纳米纤维/锰氧化物电化学电容器的核壳管状纳米结构电极

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摘要

Here we propose a core-shell tubular nanostructure consisted of hollow carbon nanofiber and manganese oxide (MnO_2) for the application of high capacitance electrochemical capacitors. Hollow nanostructured carbon nanofibers are prepared using an electrospinning technique with a dual nozzle. The hollow channel of carbon nanofibers enables the uptake of MnO_2 precursor solution inside the hollow carbon nanofiber, leading to the formation of MnO_2 layer on both the inner and outer surfaces of hollow carbon nanofiber. The utilization of both surfaces of hollow carbon nanofiber increases the effective reaction sites of electrode materials contacted with an electrolyte as well as maximizes the loading mass of MnO_2 on the surface of hollow carbon nanofiber (94% compared to carbon contents), consequently enabling the fabrication of electrochemical capacitors with the increased specific capacitance of 237 F/g.
机译:在这里,我们提出了由中空碳纳米纤维和氧化锰(MnO_2)组成的核-壳管状纳米结构,以用于高电容电化学电容器。中空纳米结构的碳纳米纤维是使用带有双喷嘴的静电纺丝技术制备的。碳纳米纤维的中空通道能够吸收中空碳纳米纤维内部的MnO_2前体溶液,从而导致在中空碳纳米纤维的内外表面上均形成MnO_2层。中空碳纳米纤维的两个表面的利用增加了与电解质接触的电极材料的有效反应部位,并且最大化了中空碳纳米纤维的表面上的MnO_2的负载质量(与碳含量相比为94%),因此使得能够制造增加了237 F / g的比电容的电化学电容器。

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