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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Renewable graphene-like nitrogen-doped carbon nanosheets as supercapacitor electrodes with integrated high energy-power properties
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Renewable graphene-like nitrogen-doped carbon nanosheets as supercapacitor electrodes with integrated high energy-power properties

机译:具有集成的高能量功率特性的可再生石墨烯状氮掺杂碳纳米片作为超级电容器电极

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The development of supercapacitors with integrated high energy-power properties coupled with long cyclic life is an urgent demand in the energy storage field. The key to the assembly of such devices is to design and fabricate novel high-performance electrode materials in conjunction with matched electrolytes. In this study, a renewable graphene-like nitrogen-doped carbon nanosheet (RGNC-NS) has been constructed by using simultaneous carbonization and auto-activation followed by ultrasonic assisted liquid exfoliation from natural layered shrimp shells. The final RGNC-NS had an optimum integration of graphene-like nanostructures (similar to 5 nm thick), large specific surface area (1946 m(2) g(-1)), and rich nitrogen doping (8.75 wt%), resulting in high conductivity (7.8 S cm(-1)) and good surface wettability with an electrolyte. The RGNC-NS as a supercapacitor electrode exhibited an excellent rate capability with an ultrahigh capacitance of 322 F g(-1) at 0.5 A g(-1) and 241 F g(-1) at 100 A g(-1) (75% retention), as well as a long cyclic stability of 98.3% capacitance retention after 20 000 cycles at 10 A g(-1) in 6 M KOH. Moreover, the RGNC-NS in a mixed ionic liquid electrolyte displayed an integrated high energy-power density of 30 W h kg(-1) energy density at 64 000 W kg(-1) power density and 93.2% capacitance retention after 8000 cycles at 5 A g(-1).
机译:具有高能量-功率特性并具有长循环寿命的超级电容器的开发是储能领域的迫切需求。组装此类设备的关键是结合匹配的电解质来设计和制造新型高性能电极材料。在这项研究中,通过同时碳化和自动活化,然后从天然层状虾壳中进行超声波辅助的液体剥落,构造了可再生的石墨烯状氮掺杂碳纳米片(RGNC-NS)。最终的RGNC-NS具有石墨烯样纳米结构(近似5 nm厚),大比表面积(1946 m(2)g(-1))和富氮掺杂(8.75 wt%)的最佳集成。具有高导电率(7.8 S cm(-1))和良好的电解质表面润湿性。作为超级电容器电极的RGNC-NS具有出色的倍率能力,在0.5 A g(-1)时具有322 F g(-1)的超高电容,在100 A g(-1)时具有241 F g(-1)的超高电容( 75%的保留率),以及在6 M KOH中的10 A g(-1)在20000次循环后98,000%的长期电容稳定性。此外,混合离子液体电解质中的RGNC-NS在64000 W kg(-1)功率密度下表现出30 W h kg(-1)能量密度的集成高能量-功率密度,在8000次循环后显示93.2%的电容保持率在5 A g(-1)下。

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