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Harmonizing Energy and Power Density toward 2.7 V Asymmetric Aqueous Supercapacitor

机译:朝着2.7 V不对称水性超级电容器协调能量和功率密度

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Tremendous research efforts are devoted to developing wide potential window aqueous supercapacitors to resolve their low energy density concern. While the operational potential window is dictated by the intrinsic electrochemical stability of water (1.23 V), such a bottleneck may be surpassed by leveraging the additional overpotential of the oxygen evolution reaction and the hydrogen evolution reaction (HER). Herein, by employing an electroreduction technique, Na+ is adsorbed onto the carbon negative electrode which effectively acts as a physical barrier to hinder intermediate HER product formation, thereby reducing HER activity. To complement the wide potential carbon electrode, Na0.25MnO2 is employed as the positive electrode to take advantage of the extra energy (i.e., increased overpotential) required for Na+ insertion process into the structure. The asymmetric supercapacitor exhibits high energy density of 61.1 W h kg(-1) at a power density of 982 W kg(-1), and even at an ultrahigh power density of 42.9 kW kg(-1), a respectable energy density of 16.3 W h kg(-1) is attained. In addition, 93.7% capacitance retention is recorded after cycling for 10 000 cycles which further demonstrates its suitability as supercapacitor. The present success in fabricating a 2.7 V asymmetric supercapacitor will open a promising research route toward achieving high energy density and high power density.
机译:大量的研究工作致力于开发潜在的宽窗口含水超级电容器,以解决它们对低能量密度的担忧。尽管工作电势窗口由水的固有电化学稳定性(1.23 V)决定,但可以利用氧释放反应和氢释放反应(HER)的额外超电势来克服这一瓶颈。在此,通过采用电还原技术,Na +被吸附到碳负电极上,该碳负电极有效地充当了阻碍中间HER产物形成的物理屏障,从而降低了HER活性。为了补充宽电势的碳电极,Na0.25MnO2被用作正电极,以利用将Na +插入过程到结构中所需的额外能量(即增加的超电势)。非对称超级电容器在982 W kg(-1)的功率密度下表现出61.1 W h kg(-1)的高能量密度,甚至在42.9 kW kg(-1)的超高功率密度下也表现出可观的能量密度。达到16.3 W h kg(-1)。此外,在循环10 000次后记录到93.7%的电容保持率,这进一步证明了其作为超级电容器的适用性。目前制造2.7 V不对称超级电容器的成功将为实现高能量密度和高功率密度开辟有希望的研究途径。

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