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All-Solid-State Symmetric Supercapacitor Based on Co3O4 Nanoparticles on Vertically Aligned Graphene

机译:基于Co3O4纳米粒子的垂直排列石墨烯全固态对称超级电容器

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摘要

We have synthesized the hybrid supercapacitor electrode of Co3O4 nanoparticles on vertically aligned graphene nanosheets (VAGNs) supported by carbon fabric. The VAGN served as an excellent backbone together with the carbon fabric, enhancing composites to a high specific capacitance of 3480 F/g, approaching the theoretical value (3560 Fig). A highly flexible all-solid-state symmetric supercapacitor device was fabricated by two pieces of our Co3O4/VAGN/carbon fabric hybrid electrode. The device is suitable for different bending angles and delivers a high capacitance (580 F/g), good cycling ability (86.2% capacitance retention after 20 000 cycles), high energy density (80 Wh/kg), and high power density (20 kW/kg at 27 Wh/kg). These excellent electrochemical performances, as a result of the particular structure of VAGN and the flexibility of the carbon fabric, suggest that these composites have an enormous potential in energy application.
机译:我们已经在碳纤维支撑的垂直排列的石墨烯纳米片(VAGNs)上合成了Co3O4纳米粒子的混合超级电容器电极。 VAGN与碳纤维织物一起充当了出色的主干,将复合材料增强到3480 F / g的高比电容,接近理论值(图3560)。由两片我们的Co3O4 / VAGN /碳纤维混合电极制造了一种高度灵活的全固态对称超级电容器器件。该设备适用于不同的弯曲角度,并具有高电容(580 F / g),良好的循环能力(2万次循环后86.2%的电容保持率),高能量密度(80 Wh / kg)和高功率密度(20千瓦/千克(27 Wh / kg)。由于VAGN的特殊结构和碳纤维的柔韧性,这些优异的电化学性能表明这些复合材料在能源应用方面具有巨大的潜力。

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