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基于多层 MnO2/氧化石墨烯纳米片和具有增强循环稳定性的分级多孔碳的高性能不对称超级电容器。

High-performance asymmetric supercapacitors based on multilayer MnO2 /graphene oxide nanoflakes and hierarchical porous carbon with enhanced cycling stability.

机构信息

Key Laboratory of Applied Chemistry, Yanshan University, Qinhuangdao, 066004, China.

出版信息

Small. 2015 Mar 18;11(11):1310-9. doi: 10.1002/smll.201401922. Epub 2014 Nov 10.

Abstract

In this work, MnO(2)/GO (graphene oxide) composites with novel multilayer nanoflake structure, and a carbon material derived from Artemia cyst shell with genetic 3D hierarchical porous structure (HPC), are prepared. An asymmetric supercapacitor has been fabricated using MnO(2)/GO as positive electrode and HPC as negative electrode material. Because of their unique structures, both MnO(2)/GO composites and HPC exhibit excellent electrochemical performances. The optimized asymmetric supercapacitor could be cycled reversibly in the high voltage range of 0-2 V in aqueous electrolyte, which exhibits maximum energy density of 46.7 Wh kg(-1) at a power density of 100 W kg(-1) and remains 18.9 Wh kg(-1) at 2000 W kg(-1). Additionally, such device also shows superior long cycle life along with ∼100% capacitance retention after 1000 cycles and ∼93% after 4000 cycles.

摘要

在这项工作中,制备了具有新颖多层纳米片结构的 MnO(2)/GO(氧化石墨烯)复合材料和一种具有遗传 3D 分级多孔结构(HPC)的来源于丰年虾卵壳的碳材料。使用 MnO(2)/GO 作为正极和 HPC 作为负极材料,制备了一种非对称超级电容器。由于其独特的结构,MnO(2)/GO 复合材料和 HPC 均表现出优异的电化学性能。优化后的非对称超级电容器可以在水溶液电解质中以 0-2 V 的高电压范围可逆循环,在 100 W kg(-1) 的功率密度下,其最大能量密度为 46.7 Wh kg(-1),在 2000 W kg(-1)时仍保持 18.9 Wh kg(-1)。此外,该器件还具有出色的长循环寿命,在 1000 次循环后电容保持率约为 100%,在 4000 次循环后仍保持约 93%。

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