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Hybrid electrochemical supercapacitor based on birnessite-type MnO2/carbon composite as the positive electrode and carbonized iron-polyaniline/nickel graphene foam as a negative electrode

机译:基于Birneryite型MnO2 /碳复合材料的杂化电化学超级电容器作为正极和碳化铁 - 聚苯胺/镍石墨烯泡沫作为负极

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摘要

In this work, a birnessite-type MnO2/carbon composite with hierarchical nanostructures was synthesized using KMnO4 solution and spent printing carbon grains. A hybrid electrochemical supercapacitor device was fabricated based on the birnessite-type MnO2–carbon composite electrode and carbonized iron-polyaniline/nickel graphene foam as positive and negative electrodes, respectively. At the lowest specific current of 1.0 A g−1 and cell potential of 2.2 V in 2.5M KNO3 electrolyte, the device displayed a high energy and power density of 34.6 W h kg−1 and 1100.0 W kg−1, respectively. The device further displayed long-term cycling stability with a capacitance retention of 98% over 10 000 galvanostatic charge–discharge cycles at 10 A g−1. This device displays the overall excellent electrochemical performance.
机译:在这项工作中,使用KMNO4溶液合成具有分层纳米结构的Birnerite型MnO2 /碳复合材料,并花费印刷碳晶粒。基于Birnerity型MNO2-碳复合电极和碳化铁 - 聚苯胺/镍石墨烯泡沫作为正极和负电极制造杂化电化学超电容器装置。在2.0V-1的最低比电流下,2.2V的电池电位为2.2V,该器件分别显示出34.6WH kg-1和1100.0 W kg-1的高能量和功率密度。该器件进一步显示了长期循环稳定性,电容保持在10 A G-1的10 000多个GA1Vanostatic电荷循环中的电容保持。该设备显示出整体优异的电化学性能。

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