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High-Performance Supercapacitor Electrodes Based on Graphene Achieved by Thermal Treatment with the Aid of Nitric Acid

机译:硝酸辅助热处理获得的基于石墨烯的高性能超级电容器电极

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摘要

In this work, graphene materials have been prepared via thermal treatment of graphene oxides with the aid of intercalated nitric acid. The nitric acid not only favors the expansion of graphene but also facilitates the generation of pores into graphene. The specific surface area of such graphene frameworks is as high as 463 m~2/g, and the pore volume reaches up to 2.23 cm~3/g. When tested as super-capacitor electrodes, the graphene frameworks delivered an extremely high specific capacitance of —370 F/g while simultaneously maintained an excellent energy density of 12.9 Wh/kg and power delivery of 250 W/kg in aqueous electrolyte. These performances are much better than those of the control samples prepared without the aid of nitric acid. The porous structure and large specific surface area are believed to have contributed to the high performances.
机译:在这项工作中,石墨烯材料是通过在插层硝酸的帮助下对石墨烯氧化物进行热处理而制备的。硝酸不仅有利于石墨烯的膨胀,而且还促进了石墨烯中孔的产生。此类石墨烯骨架的比表面积高达463 m〜2 / g,孔体积可达2.23 cm〜3 / g。当作为超级电容器电极进行测试时,石墨烯骨架可提供-370 F / g的极高比电容,同时在水性电解质中可保持12.9 Wh / kg的出色能量密度和250 W / kg的功率输出。这些性能比不使用硝酸制备的对照样品要好得多。据信多孔结构和大的比表面积有助于高性能。

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