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Redox-active electrolyte for carbon nanotube-based electric double layer capacitors

机译:用于碳纳米管双电层电容器的氧化还原活性电解质

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摘要

[EN] The specific capacitance of the MWCNTs was improved by the addition of an electrochemically active compound (indigo carmine) to an electrolyte generally used in electric double layer capacitors. The pseudocapacitive contribution of the IC trebled the specific capacitance values of the MWCNTs at low current densities (from 17 Fg−1 to 50 Fg−1). The good resistance obtained for the MWCNT-based capacitor was not modified with the use of this novel redox-active electrolyte. A reversible process associated to the redox reaction of IC was found to be responsible for the capacitance increase observed. Therefore, a combined effect of double layer formation and pseudocapacitive phenomena is presented. Long-term cycling experiments performed showed good stability with a reduction of the initial capacitance values of 30% after 10,000 galvanostatic cycles at 360 mAg−1. The efficiency of the cell was close to 100% throughout the experiment.
机译:[EN]通过向双电层电容器中通常使用的电解质中添加电化学活性化合物(靛红胭脂红)来提高MWCNT的比电容。在低电流密度(从17 Fg-1到50 Fg-1)下,IC的伪电容贡献是MWCNT的比电容值的三倍。使用这种新型的氧化还原活性电解质不会改善基于MWCNT的电容器获得的良好电阻。发现与IC的氧化还原反应有关的可逆过程是观察到的电容增加的原因。因此,提出了双层形成和伪电容现象的组合效果。进行的长期循环实验显示出良好的稳定性,在360 mAg-1下进行10,000次恒电流循环后,初始电容值降低了30%。在整个实验过程中,电池效率接近100%。

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