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Reduced Graphene Oxide/Carbon Nanotube Composites as Electrochemical Energy Storage Electrode Applications

机译:还原的氧化石墨烯/碳纳米管复合材料作为电化学储能电极的应用

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摘要

We demonstrate an electrochemical reduction method to reduce graphene oxide (GO) to electrochemically reduced graphene oxide (ERGO) with the assistance of carbon nanotubes (CNTs). The faster and more efficient reduction of GO can be achieved after proper addition of CNTs into GO during the reduction process. This nanotubeanosheet composite was deposited on electrode as active material for electrochemical energy storage applications. It has been found that the specific capacitance of the composite film was strongly affected by the mass ratio of GO/CNTs and the scanning ratio of cyclic voltammetry. The obtained ERGO/CNT composite electrode exhibited a 279.4 F/g-specific capacitance and showed good cycle rate performance with the evidence that the specific capacitance maintained above 90% after 6000 cycles. The synergistic effect between ERGO and CNTs as well as crossing over of CNTs into ERGO is attributed to the high electrochemical performance of composite electrode.
机译:我们演示了一种电化学还原方法,借助碳纳米管(CNT)将氧化石墨烯(GO)还原为电化学还原的氧化石墨烯(ERGO)。在还原过程中向GO中正确添加CNT后,可以更快,更有效地还原GO。将该纳米管/纳米片复合材料作为活性材料沉积在电极上,用于电化学储能。已经发现,GO / CNT的质量比和循环伏安法的扫描率强烈影响复合膜的比电容。获得的ERGO / CNT复合电极表现出279.4F / g的比电容,并显示出良好的循环速率性能,证据表明在6000次循环后比电容保持在90%以上。 ERGO与碳纳米管的协同作用以及碳纳米管跨入ERGO的作用归因于复合电极的高电化学性能。

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