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High-Performance Supercapacitors of N-Doped Graphene Aerogel and Its Nanocomposites

机译:N掺杂石墨烯气凝胶的高性能超级电容器及其纳米复合材料

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Nitrogen-doped graphene aerogel (NG_(ae)) with three-dimensional interconnected structure was synthesized by a hydrothermal reduction of graphene oxide with hydrazine and a following freezing-dry method. The 3D morphology of conductive NG_(ae) provides diffusion pathways for electron and ion transportation, Also, the nitrogen-containing groups can store charges via surface redox reactions. The as-fabricated NG_(ae) symmetric supercapacitor (CR2016) in 1 M H_2SO_4 electrolyte provides a specific capacitance of 470.45 F g~(-1) at an applied current of 1 mA with maximum energy density and power density of 41.71 Wh kg~(-1) and 2442.47 W kg~(-1), respectively. Incorporating MnO_2 and polyaniline to NG_(ae) structure can provide higher specific power and/or energy. The as-fabricated supercapacitors in this work may be practically used in high energy and power applications.
机译:具有三维互连结构的氮掺杂石墨烯气凝胶(NG_(AE))通过用肼的水热还原与肼和下列冻干方法的水热还原合成。导电NG_(AE)的3D形态提供电子和离子运输的扩散途径,也可以通过表面氧化还原反应储存电荷。 1 M H_2SO_4电解质中的AS制造的NG_(AE)对称超级电容器(CR2016)在1 mA的施加电流下提供470.45f g〜(-1)的特定电容,最大能量密度和功率密度为41.71whkg〜 (-1)和2442.47 W kg〜(-1)。将MnO_2和聚苯胺掺入NG_(AE)结构可以提供更高的特定功率和/或能量。本工作中的制造超级电容器实际上可以用于高能量和功率应用。

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