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柔性超级电容器电极材料研究进展 被引量:10

Research progress of flexible supercapacitor electrode materials
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摘要 随着柔性可穿戴电子设备的发展,能为其提供高能量、高功率的柔性超级电容器备受关注,以适应于不同的应用领域。电极与电解质作为影响超级电容器的柔性与电化学性能的主要部分。主要综述了金属基与碳基柔性超级电容器电极材料与集流体的发展趋势,并从集流体的优缺点方面分析和展望了柔性集流体与柔性超级电容器未来发展方向。 With the development of flexible wearable electronic devices, the high energy and high power flexible supercapacitors attract more and more attention for different application areas. In the aspect of flexibility and electrochemical performance of supercapacitor, the electrode and electrolyte play major roles. The development trend of electrode material and current collector of metal based and carbon based flexible supercapacitor were reviewed. And the future development direction of flexible current collector and flexible supercapacitor was analyzed and prospected from the advantages and disadvantages of current collector.
作者 宋利黎 韩颖慧 李玉娟 李乐 刘云鹏 SONG Li-li;HAN Ying-hui;LI Yu-juan;LI Le;LIU Yun-peng(School of Mathematics and Physics, North China Electric Power University, Baoding Hebei 071003, China;School of Electrical and Electronic Engineering, North China Electric Power University, Baoding Hebei 071003, China)
出处 《电源技术》 CAS 北大核心 2019年第2期354-356,共3页 Chinese Journal of Power Sources
关键词 柔性 超级电容器 碳材料 金属基 石墨烯 碳纳米管(CNTs) flexible supercapacitor carbon material metal base graphene carbon nanotubes(CNTs)
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  • 1Conway B E. Transiton from "supercapacitor" to "battery" behavior in electrochemical energy storage[J]. J Electrochem Soc,1991,138(6):1539 1548.
  • 2Yuan Longyan, Lu Xihong, Xiao Xu,et a[. Flexible solid-state supercapacitors based on carbon nanoparticles/MnO2 nano- rods hybrid structure[J]. ACS Nano,2012,6(1) :656 661.
  • 3Meng Chuizbou, Liu Changhong, Chen Luzhuo,et al. Highly flexible and all-solid-state paperlike polymer supercapacitors [J]. Nano Lett, 2010,10 (10) : 4025-4031.
  • 4Gao Hongcai, Xiao Fei,Ching Chibun, et al. Flexible all solid-state asymmetric supercapacitors based on free-standing car bon nanotube/graphene and Mn3 04 nanopartiele/graphene paper electrodes[J]. ACS Appl Mater Interfaces, 2012,4 (12) : 7020-7026.
  • 5Choi B G, Hong J, Hong W H, et al. Facilitated ion transport in all-solid-state flexible supercapacitors [J]. ACS Nano, 201!,5(9) :7205-7213.
  • 6El Kady M F,Strong V,Dubin S. Laser scribing of high-performance and flexible graphene-based electrochemical capaci- tors[J]. Science, 2012,335 (6074) : 1326-1330.
  • 7Choudhury N A,Sampath S,Shukla A K. Hydrogel polymer electrolytes for electrochemical capacitors: An overview[J]. Energ Environl Sci, 2009,2 : 55-67.
  • 8Yoo J J ,Balakrishnan K,Huang J. Ultrathin planar graphene supercapacitors[J]. Nano Lett,2011,11(4):1423-1427.
  • 9Hummers W S,Offeman R E. Preparation of graphite oxide[J]. J Am Chem Soe,1958,80(6) :1339-1341.
  • 10Li Dan, Muller M B,Gilje S, et al. Processable aqueous dispersions of graphene nanosheets[J]. Nat Nanotech, 2008, 3(2) :101-105.

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