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Cobalt Oxide Nanoflakes on Single Walled Carbon Nanotube Thin Films for Supercapacitor Electrodes

机译:超级电容器电极单壁碳纳米管薄膜上的氧化钴纳米薄片

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摘要

We demonstrate a simple and cost-effective approach for the fabrication of cobalt oxide (Co3O4) nanoflakes on single walled carbon nanotube (SWNT) thin films for supercapacitor electrodes. SWNT thin films are prepared by vacuum filtration and consecutive stamping method onto which cobalt hydroxide (Co(OH)(2)) nanoflakes are electrodeposited and annealed to obtain Co3O4. A gravimetric capacitance of 313.9 F.g(-1), corresponding to an areal specific capacitance of 70.5 mF.cm(-2) is obtained from the fabricated electrodes at a scan rate of 1 mV/s. A capacity retention of up to 80% following 3000 cycles is obtained for the fabricated nanocomposite electrodes, while morphological evolution of the electrodes was monitored through high resolution transmission microscopy during cycling. Co3O4 nanoflakes show excellent structural stability through cycling with promising capacity retention, suggesting the potential of Co3O4 nanoflakes on SWNT thin films as supercapacitor electrodes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们展示了一种用于超级电容器电极的单壁碳纳米管(SWNT)薄膜上制造氧化钴(Co3O4)纳米薄片的简单且经济高效的方法。通过真空过滤和连续压印方法制备SWNT薄膜,然后在其上电沉积氢氧化钴(Co(OH)(2))纳米薄片并进行退火以获得Co3O4。从制造的电极以1 mV / s的扫描速率获得313.9 F.g(-1)的重量电容,相当于70.5 mF.cm(-2)的面积比电容。对于所制造的纳米复合电极,在3000次循环后,容量保持率高达80%,而在循环过程中通过高分辨率透射显微镜监测了电极的形态演变。 Co3O4纳米薄片通过循环显示出极好的结构稳定性,并具有可观的容量保持能力,表明CoNT3纳米薄片在SWNT薄膜上作为超级电容器电极的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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