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High performance electrochemical capacitors based on MnO2/activated-carbon-paper

机译:基于MnO2 /活性炭纸的高性能电化学电容器

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In this research, the surface of commercial carbon paper was firstly activated with potassium dichromate lotion and then MnO2 nanoribbons were anchored onto the activated carbon paper (denoted as ACP) through an electrodeposition route. The as-prepared composite MnO2/ACP possessed a specific capacitance as high as 640.8 F g(-1) calculated from the discharge curve with a current density of 10.0 A g(-1) and this observation was deemed to originate from its enlarged specific surface area and improved electronic conductivity. Accordingly, the specific capacitances calculated from cyclic voltammograms were 617.0 and 395.0 F g(-1) at a potential scan rate of 20 and 50 mV s(-1), which kept 81.5% and 52.2% specific capacitance at 10 mV s(-1) (757.0 F g(-1)). This indicated that the composite MnO2/ACP possessed good rate capability as an active electrode material for pseudo-capacitors. In a word, for the first time the composite MnO2/ACP has been reported as a promising electrode material for efficient supercapacitors.
机译:在这项研究中,首先用重铬酸钾洗液活化了商业碳纸的表面,然后通过电沉积途径将MnO2纳米带锚定在活性碳纸上(称为ACP)。制备的复合材料MnO2 / ACP的比电容高达640.8 F g(-1),由放电曲线计算得出,电流密度为10.0 A g(-1),并且认为该观察结果是由于其比电比增大而引起的。表面积和改善的电子传导性。因此,在20和50 mV s(-1)的电位扫描速率下,由循环伏安图计算出的比电容为617.0和395.0 F g(-1),在10 mV s(-)下保持81.5%和52.2%的比电容。 1)(757.0 F g(-1))。这表明,复合MnO2 / ACP具有良好的倍率性能,可作为拟电容器的活性电极材料。简而言之,复合材料MnO2 / ACP首次被报道为有效的超级电容器的有希望的电极材料。

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