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Nature of FeSe_2/N-C Anode for High Performance Potassium Ion Hybrid Capacitor

机译:高性能钾离子混合电容器FeSe_2 / N-C阳极的性质

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摘要

Potassium ion hybrid capacitors have great potential for large-scale energy devices, because of the high power density and low cost. However, their practical applications are hindered by their low energy density, as well as electrolyte decomposition and collector corrosion at high potential in potassium bis(fluoro-sulfonyl)imide-based electrolyte. Therefore, anode materials with high capacity, a suitable voltage platform, and stability become a key factor. Here, N-doping carbon-coated FeSe2 clusters are demonstrated as the anode material for a hybrid capacitor, delivering a reversible capacity of 295 mAh g(-1) at 100 mA g(-1) over 100 cycles and a high rate capability of 158 mAh g(-1) at 2000 mA g(-1) over 2000 cycles. Meanwhile, through density functional theory calculations, in situ X-ray diffraction, and ex situ transmission electron microscopy, the evolution of FeSe2 to Fe3Se4 for the electrochemical reaction mechanism is successfully revealed. The battery-supercapacitor hybrid using commercial activated carbon as the cathode and FeSe2/N-C as the anode is obtained. It delivers a high energy density of 230 Wh kg(-1) and a power density of 920 W kg(-1) (the energy density and power density are calculated based on the total mass of active materials in the anode and cathode).
机译:由于高功率密度和低成本,钾离子混合电容器在大规模能源设备中具有巨大潜力。然而,它们的低能量密度,以及基于双(氟磺酰基)酰亚胺钾的电解质在高电势下的电解质分解和集电体腐蚀阻碍了它们的实际应用。因此,具有高容量,合适的电压平台和稳定性的阳极材料成为关键因素。在这里,N掺杂碳包覆的FeSe2团簇被证明是混合电容器的阳极材料,在100个周期内可在100 mA g(-1)下提供295 mAh g(-1)的可逆容量,并且具有高倍率的容量在2000个循环中,在2000 mA g(-1)时为158 mAh g(-1)。同时,通过密度泛函理论计算,原位X射线衍射和异位透射电子显微镜,成功揭示了FeSe2向Fe3Se4的电化学反应机理。获得了以商用活性炭为阴极,FeSe2 / N-C为阳极的电池-超级电容器混合体。它具有230 Wh kg(-1)的高能量密度和920 W kg(-1)的功率密度(能量密度和功率密度是根据阳极和阴极中活性物质的总质量计算得出的)。

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