Solution-Processed Graphene/MnO2 Nanostructured Textiles for High-Performance Electrochemical Capacitors

材料科学 石墨烯 超级电容器 电容 储能 纳米技术 纳米材料 电容器 电解质 电极 电化学 碳纳米管 电气工程 功率(物理) 电压 化学 工程类 物理化学 物理 量子力学
作者
Guihua Yu,Liangbing Hu,Michael Vosgueritchian,Hai Wang,Xing Xie,James R. McDonough,Xu Cui,Yi Cui,Zhenan Bao
出处
期刊:Nano Letters [American Chemical Society]
卷期号:11 (7): 2905-2911 被引量:1205
标识
DOI:10.1021/nl2013828
摘要

Large scale energy storage system with low cost, high power, and long cycle life is crucial for addressing the energy problem when connected with renewable energy production. To realize grid-scale applications of the energy storage devices, there remain several key issues including the development of low-cost, high-performance materials that are environmentally friendly and compatible with low-temperature and large-scale processing. In this report, we demonstrate that solution-exfoliated graphene nanosheets (∼5 nm thickness) can be conformably coated from solution on three-dimensional, porous textiles support structures for high loading of active electrode materials and to facilitate the access of electrolytes to those materials. With further controlled electrodeposition of pseudocapacitive MnO2 nanomaterials, the hybrid graphene/MnO2-based textile yields high-capacitance performance with specific capacitance up to 315 F/g achieved. Moreover, we have successfully fabricated asymmetric electrochemical capacitors with graphene/MnO2-textile as the positive electrode and single-walled carbon nanotubes (SWNTs)-textile as the negative electrode in an aqueous Na2SO4 electrolyte solution. These devices exhibit promising characteristics with a maximum power density of 110 kW/kg, an energy density of 12.5 Wh/kg, and excellent cycling performance of ∼95% capacitance retention over 5000 cycles. Such low-cost, high-performance energy textiles based on solution-processed graphene/MnO2 hierarchical nanostructures offer great promise in large-scale energy storage device applications.

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