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Graphene supercapacitor with both high power and energy density

机译:石墨烯超级电容器具有高功率和能量密度

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摘要

Supercapacitors, based on fast ion transportation, are specialized to provide high power, long stability, and efficient energy storage using highly porous electrode materials. However, their low energy density excludes them from many potential applications that require both high energy density and high power density performances. Using a scalable nanoporous graphene synthesis method involving an annealing process in hydrogen, here we show supercapacitors with highly porous graphene electrodes capable of achieving not only a high power density of 41 kW kg(-1) and a Coulombic efficiency of 97.5%, but also a high energy density of 148.75 Wh kg(-1). A high specific gravimetric and volumetric capacitance (306.03 F g(-1) and 64.27 F cm(-3)) are demonstrated. The devices can retain almost 100% capacitance after 7000 charging/discharging cycles at a current density of 8 A g(-1). The superior performance of supercapacitors is attributed to their ideal pore size, pore uniformity, and good ion accessibility of the synthesized graphene.
机译:基于快速离子运输的超级电容器专门用于使用高孔电极材料提供高功率,长稳定性和高效的能量存储。然而,它们的低能量密度不包括需要高能密度和高功率密度性能的许多潜在应用。使用涉及氢气退火过程的可扩展纳米多孔石墨烯合成方法,在这里,我们显示了具有高度多孔石墨烯电极的超级电容器,其不仅能够实现41 kg kg(-1)的高功率密度和97.5%的库仑效率,还可以实现97.5%的库仑效率高能量密度为148.75WH(-1)。证明了高比重量和体积电容(306.03f g(-1)和64.27f cm(-3))。 7000充电/放电循环以8A G(-1)的电流密度,该装置可以保持几乎100%电容。超级电容器的卓越性能归因于其理想的孔径,孔隙均匀性和合成的石墨烯的良好离子可接近性。

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