Institute of Nanoscience and Nanotechnology, Department of Physics, Central China Normal University, Wuhan 430079, Hubei, People's Republic of China.
Nano Lett. 2013 May 8;13(5):2078-85. doi: 10.1021/nl400378j. Epub 2013 Apr 11.
We have developed a supercapacitor electrode composed of well-aligned CoO nanowire array grown on 3D nickel foam with polypyrrole (PPy) uniformly immobilized onto or firmly anchored to each nanowire surface to boost the pseudocapacitive performance. The electrode architecture takes advantage of the high electrochemical activity from both the CoO and PPy, the high electronic conductivity of PPy, and the short ion diffusion pathway in ordered mesoporous nanowires. These merits together with the elegant synergy between CoO and PPy lead to a high specific capacitance of 2223 F g(-1) approaching the theoretical value, good rate capability, and cycling stability (99.8% capacitance retention after 2000 cycles). An aqueous asymmetric supercapacitor device with a maximum voltage of 1.8 V fabricated by using our hybrid array as the positive electrode and activated carbon film as the negative electrode has demonstrated high energy density (43.5 Wh kg(-1)), high power density (5500 W kg(-1) at 11.8 Wh kg(-1)) and outstanding cycleability (~20,000 times). After charging for only ~10 s, two such 4 cm(2) asymmetric supercapacitors connected in series can efficiently power 5 mm diameter red, yellow, and green round LED indicators (lasting for 1 h for red LED) and drive a mini 130 rotation-motor robustly.
我们开发了一种超级电容器电极,由生长在三维镍泡沫上的取向良好的 CoO 纳米线阵列组成,并且在每个纳米线表面均匀地固定或牢固地锚定了聚吡咯(PPy),以提高赝电容性能。该电极结构利用了 CoO 和 PPy 的高电化学活性、PPy 的高电子导电性以及有序介孔纳米线中的短离子扩散途径。这些优点以及 CoO 和 PPy 之间的协同作用,使比电容达到 2223 F g(-1),接近理论值,具有良好的倍率性能和循环稳定性(2000 次循环后电容保持率为 99.8%)。通过使用我们的混合阵列作为正极,活性炭薄膜作为负极,制造了一个最大电压为 1.8 V 的水系不对称超级电容器器件,该器件具有高能量密度(43.5 Wh kg(-1))、高功率密度(5500 W kg(-1) 在 11.8 Wh kg(-1) 时)和出色的循环稳定性(~20000 次循环)。仅充电约 10 s 后,两个串联的这种 4 cm(2)不对称超级电容器可有效地为 5 毫米直径的红色、黄色和绿色圆形 LED 指示灯供电(红色 LED 持续 1 小时),并可靠地驱动一个小型 130 旋转电机。