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Nanoporous Carbon Derived from Green Material by an Ordered Activation Method and Its High Capacitance for Energy Storage

机译:有序活化法从绿色材料衍生出的纳米多孔碳及其储能的高容量

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摘要

Carbon materials have been widely used as electrode materials for supercapacitors, while the current carbon precursors are mainly derived from fossil fuels. Biomass-derived carbon materials have become new and effective materials for electrodes of supercapacitors due to their sustainability, low pollution potential, and abundant reserves. Herein, we present a new biomass carbon material derived from water hyacinth by a novel activation method (combination of KOH and HNO activation). According to the electrochemical measurements, the material presents an ultrahigh capacitance of 374 F g (the current density is 1 A g ). Furthermore, the material demonstrates excellent rate performance (105 F g at a higher density of 20 A g ) and ideal cycling stability (87.3% capacity retention after 5000 times charge–discharge at 2 A g ). When used for a symmetrical supercapacitor device, the material also shows a relatively high capacity of 330 F g at 1 A g (a two-electrode system). All measurements suggest the material is an effective and noteworthy material for the electrodes of supercapacitors.
机译:碳材料已被广泛用作超级电容器的电极材料,而当前的碳前体主要来自化石燃料。生物质衍生的碳材料具有可持续性,低污染潜力和丰富的储量,已成为超级电容器电极的新型有效材料。在这里,我们提出了一种通过新型活化方法(结合KOH和HNO活化)从水葫芦中得到的新型生物质碳材料。根据电化学测量,该材料具有374 F g的超高电容(电流密度为1 A g)。此外,该材料还具有出色的倍率性能(在20 A g的较高密度下为105 F g)和理想的循环稳定性(在2 A g下进行5000次充放电后,容量保持率为87.3%)。当用于对称超级电容器设备时,该材料在1 A g(两电极系统)下也显示出330 F g的相对较高的容量。所有测量均表明该材料是超级电容器电极的有效且值得注意的材料。

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