Tang Pengyi, Han Lijuan, Zhang Li
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong , Hong Kong SAR, People's Republic of China.
ACS Appl Mater Interfaces. 2014 Jul 9;6(13):10506-15. doi: 10.1021/am5021028. Epub 2014 Jun 18.
A facile and low-cost method is presented to synthesize graphite/PEDOT/MnO2 composites with controlled network structures on commercial supercapacitor separator (CSS) membranes for high-performance supercapacitors, in which pencil lead and a cellulose-based commercial supercapacitor separator membrane were applied as the graphite source and the flexible substrate, respectively. The dependence of PEDOT and MnO2 loading on the structural formation, the electrochemical performance of the hybrid electrode, and the formation mechanism of MnO2 nanowires are systematically investigated. The optimized electrode possesses a high areal capacitance of 316.4 mF/cm(2) at a scan rate of 10 mV/s and specific capacitance of 195.7 F/g at 0.5 A/g. The asymmetric supercapacitor device assembled using optimized CSS/Graphite/PEDOT/MnO2 electrode and activated carbon electrode exhibits a high energy density of 31.4 Wh/kg at a power density of 90 W/kg and maintains 1 Wh/kg at 4500 W/kg. After 2000 cycles, the device retains 81.1% of initial specific capacitance, and can drive a mini DC-motor for ca. 10 s. The enhanced capability of the CSS-based graphite/PEDOT/MnO2 network electrode has high potential for low-cost, high-performance, and flexible supercapacitors.
本文提出了一种简便且低成本的方法,用于在商用超级电容器隔膜(CSS)上合成具有可控网络结构的石墨/PEDOT/MnO₂复合材料,以制备高性能超级电容器,其中分别将铅笔芯和纤维素基商用超级电容器隔膜用作石墨源和柔性基底。系统研究了PEDOT和MnO₂负载量对结构形成、混合电极的电化学性能以及MnO₂纳米线形成机理的影响。优化后的电极在扫描速率为10 mV/s时具有316.4 mF/cm²的高面积电容,在0.5 A/g时的比电容为195.7 F/g。使用优化后的CSS/石墨/PEDOT/MnO₂电极和活性炭电极组装的不对称超级电容器器件在功率密度为90 W/kg时具有31.4 Wh/kg的高能量密度,在4500 W/kg时保持1 Wh/kg。经过2000次循环后,该器件保留了初始比电容的81.1%,并能驱动小型直流电机约10秒。基于CSS的石墨/PEDOT/MnO₂网络电极的增强性能在低成本、高性能和柔性超级电容器方面具有很高的潜力。