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首页> 外文期刊>Journal of Materials Science >Active-screen plasma multi-functionalization of graphene oxide for supercapacitor application
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Active-screen plasma multi-functionalization of graphene oxide for supercapacitor application

机译:超级电容器应用的波环氧化物的主动筛血浆多功能化

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摘要

Supercapacitors have attracted much attention as energy storage device for its long cycle life and high power density. Graphene materials are competitive candidates as electrodes of supercapacitors for their high specific surface area, electrical conductivity and stability. Either heteroatoms doping or incorporation with metal/metal oxides have been reported effective in further improving the capacitive performance of graphene-based electrode. Here, an active-screen plasma (ASP) technique was applied on graphene oxide (GO) as a low temperature, environmentally friendly and one-step multi-purpose treatment. Characterization of ASP-treated GO revealed reduction in GO, nitrogen doping mainly in graphitic N configuration, and incorporation of multiple metal element (Fe, Mn, and Cr). Both electrical and electrochemical properties were improved considerably, with sheet resistance decreased to similar to 1.1 x 10(6) Omega sq(-1), only a fifth of that of GO, and a specific capacitance increased to similar to 20 F g(-1), four times that of GO. These results suggest advanced ASP technique a simple and facile way for a simultaneous reduction and nitrogen doping of GO, with incorporation of metal/metal oxides nanoparticles towards energy storage applications.
机译:超级电容器以其较长的循环寿命和较高的功率密度,作为储能器件受到了广泛的关注。石墨烯材料因其高比表面积、导电性和稳定性而成为超级电容器电极的候选材料。据报道,杂原子掺杂或与金属/金属氧化物结合都能有效地进一步改善石墨烯基电极的电容性能。本文将活性屏等离子体(ASP)技术应用于氧化石墨烯(GO)的低温、环保和一步多用途处理。对ASP处理过的GO的表征表明,GO减少,氮掺杂主要是石墨N构型,并掺入多种金属元素(Fe、Mn和Cr)。电学和电化学性能都得到了显著改善,薄片电阻降低到接近1.1 x 10(6)Ωsq(-1),仅为GO的五分之一,比电容增加到接近20 F g(-1),是GO的四倍。这些结果表明,先进的ASP技术是同时还原和氮掺杂GO的一种简单易行的方法,将金属/金属氧化物纳米颗粒结合到储能应用中。

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  • 来源
    《Journal of Materials Science 》 |2021年第4期| 共16页
  • 作者单位

    Univ Birmingham Sch Met &

    Mat Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Met &

    Mat Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Met &

    Mat Birmingham B15 2TT W Midlands England;

    AAAF Natl Key Lab Remfg Beijing 100072 Peoples R China;

    Jingjinji Inst Remfg Ind &

    Technol Hejian City 062450 Hebei Peoples R China;

    AAAF Natl Engn Res Ctr Mech Prod Remfg Beijing 100072 Peoples R China;

    Univ Birmingham Sch Met &

    Mat Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Met &

    Mat Birmingham B15 2TT W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

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