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Electrochemical performance of polypyrrole derived porous activated carbon-based symmetric supercapacitors in various electrolytes

机译:多孔衍生多孔活性炭基对称超级电容器的电化学性能在各种电解质中

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摘要

The electrochemical performance of porous carbon prepared from the polymerization and carbonization of pyrrole is presented in this work. The produced carbon exhibited a high specific surface area and high mesopore volume that are desirable and beneficial for high capacitive performance. Symmetric supercapacitor devices fabricated from this carbon were tested in three different electrolytes (6 M KOH, 1 M NaNO3, and 1 M Na2SO4). Higher capacitive performance (specific capacitance of 131 F g(-1)) in the 1 M Na2SO4 medium was obtained compared to the other two electrolytes a with specific capacitance of 108 F g(-1) in 6 M KOH and 94 F g(-1) in 1 M NaNO3 respectively. The difference observed in capacitance in the three electrolytes is linked to the individual properties of the electrolytes which include the conductivity and different ion solvation sizes. A potentiostatic floating test at the maximum voltage for 140 h was used to study the stability of the devices and from the experimental data, a 7% capacitance decrease was observed in the 6 M KOH electrolyte which is related to the corrosive atmosphere and oxidation of the positive electrode. A decrease of 18% in capacitance was observed in 1 M NaNO3 with an increase in resistance and 1% capacitance decay was observed in 1 M Na2SO4 with no change in resistance value at the end of the floating test. These results suggest the good performance of the polypyrrole based activated carbon for symmetric supercapacitors in aqueous electrolytes in general with 1 M Na2SO4, in particular, showing excellent stability after floating.
机译:本工作中提出了由吡咯的聚合和碳化制备的多孔碳的电化学性能。所生产的碳表现出高比表面积和高的中孔体积,是理想的,有利于高电容性能。在三种不同的电解质(6M KOH,1M纳米3和1M Na 2 SO 4)中测试由该碳制造的对称超电容器装置。在6M KOH和94F g(44fg()中相比,获得了1M NA2SO4培养基中的较高电容性能(131V(-1))中的1M NA2SO4培养基中的比较( -1)分别在1米纳米3中。三个电解质中的电容中观察到的差异与电解质的个体性质相关联,该电解质包括导电性和不同的离子溶剂化尺寸。用于140小时的最大电压下的电位浮动试验用于研究装置的稳定性,并且从实验数据中,在6M KOH电解质中观察到7%的电容减少,与腐蚀性气氛有关和氧化正极。在1M纳米中观察到电容中的18%的减少,在1M Na 2 SO 4中观察到耐药性增加,在浮动试验结束时没有变化。这些结果表明,聚吡咯基活性炭在水性电解质中的良好性能通常用1M Na 2 SO 4,特别是在漂浮后显示出优异的稳定性。

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  • 来源
    《RSC Advances》 |2016年第72期|共9页
  • 作者单位

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

    Univ Pretoria SARCHI Chair Carbon Technol &

    Mat Inst Appl Mat Dept Phys ZA-0028 Pretoria South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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