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High-performance supercapacitors based on graphene/MnO2/activated carbon fiber felt composite electrodes in different neutral electrolytes

机译:基于石墨烯/ MNO2 /活性炭纤维毡复合电极的高性能超级电容器在不同中性电解质中

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摘要

Graphene/MnO _(2) composites are introduced into activated carbon fiber felt (ACFF) to fabricate composite textile electrodes. Their micro-structure, electrical properties and electrochemical performance for supercapacitor applications in different neutral electrolytes (1 M NaNO _(3) and Ca(NO _(3) ) _(2) aqueous solutions) have been studied. The composite electrodes have similar pore features to original ACFF textiles, but show notably enhanced electrical and electrochemical performance. The composite textile electrodes show low electrical resistance, high specific capacitance (up to 1516 mF cm ~(?2) in neutral electrolytes) and excellent cycling stability (no capacitance decay after 5000 charge–discharge cycles). Besides, electrochemical capacitance of composite textile electrodes in Ca(NO _(3) ) _(2) electrolyte is higher than that in NaNO _(3) electrolyte at low scan rates (1–5 mV s ~(?1) ), but the situation is reversed when scan rates are higher than 10 mV s ~(?1) . Above all, the results show that our low-cost composite textile electrodes are high-performance in neutral electrolytes, which is helpful for developing large-scale energy storage devices.
机译:将石墨烯/ MNO _(2)复合材料引入活性炭纤维毡(ACFF)中以制造复合纺织电极。研究了不同中性电解质(1M纳米_(3)和Ca(NO _(3))_(2)水溶液)的超级电容器应用的微结构,电学性能和电化学性能。复合电极具有与原始Acff纺织品相似的孔隙,但显着增强了电气和电化学性能。复合纺织电极显示出低电阻,高比电容(中性电解质高达1516mF cm〜(Δ2)),循环稳定性优异(5000次电荷放电循环后的电容衰减)。此外,Ca的复合纺织电极的电化学电容(NO _(3))_(2)电解质高于低扫描速率(1-5mV S〜(α1))中的纳米_(3)电解质中的电解质,但是当扫描速率高于10 mV S〜(?1)时,情况会逆转。最重要的是,结果表明,我们的低成本复合纺织电极是中性电解质的高性能,有助于开发大规模的能量存储装置。

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