Flexible asymmetric supercapacitor based on MnO2 honeycomb structure

被引:0
|
作者
Yuling Chen [1 ]
Chao Chen [2 ]
Ruitao Lv [2 ]
Wanci Shen [2 ]
Feiyu Kang [2 ]
Nyanhwa Tai [3 ]
Zhenghong Huang [1 ,2 ]
机构
[1] State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University
[2] Key Laboratory of Advanced Materials(MOE), School of Materials Science and Engineering, Tsinghua University
[3] Department of Materials Science and Engineering, National Tsing Hua University
基金
中国国家自然科学基金;
关键词
Electroplating; Self-assembling nanosheets; Honeycomb structure; MnO2; Asymmetric supercapacitors; High energy density;
D O I
暂无
中图分类号
TM53 [电容器];
学科分类号
080801 ;
摘要
A flexible asymmetric supercapacitor with high energy density was constructed by using a flexible substrate of carbonized silk-fabrics decorated with carbon nanotube, electroplating MnO2nanosheets and dip-coating activated carbon powders as the positive and the negative electrodes, respectively. By controlling the electroplating time, the MnO2nanosheets can be self-assembled to honeycomb structure and showed excellent electrochemical performance in 1 mol/L Na2SO4electrolyte with SC950-EP30 performing the best. It exhibited a high specific capacitance(1110.85 F/g at a current density of 1 A/g based on the mass of MnO2) and superior rate capability(77.44% capacity retention from 1 A/g to 10 A/g).Thus, the optimal asymmetric device assembled with this material as positive electrode can deliver a maximum energy density of 43.84 Wh/kg and a maximum power density of 6.62 kW/kg.
引用
收藏
页码:616 / 619
页数:4
相关论文
共 50 条
  • [41] A GRAPHENE "MnO2" HYBRID SUPERCAPACITOR BASED ON IN-SITU ELECTRO-DEPOSITION AND DISSOLUTION OF "MnO2"
    Perret, Philippe
    Malenfant, Patrick
    Bock, Christina
    MacDougall, Barry
    NANOSTRUCTURED MATERIALS FOR ENERGY STORAGE AND CONVERSION, 2011, 35 (34): : 195 - 205
  • [42] 3D structure of MnO2 nanowire for supercapacitor application
    Ghanim, Abdulsattar
    Koonce, Jonathan
    Mubeen, Syed
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [43] Influence of the structure and morphology of MnO2 on the electrochemical performance of supercapacitor systems
    Ivanova, G. D.
    Stoyanova, A. E.
    Soserov, L. S.
    Kovacheva, D. G.
    Karashanova, D. B.
    BULGARIAN CHEMICAL COMMUNICATIONS, 2017, 49 : 71 - 76
  • [44] Direct Growth of Birnessite-Type MnO2 on Treated Carbon Cloth for a Flexible Asymmetric Supercapacitor with Excellent Cycling Stability
    Nakayama, Masaharu
    Osae, Shogo
    Kaneshige, Koki
    Komine, Kyohei
    Abe, Hikaru
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2016, 163 (10) : A2340 - A2348
  • [45] Development of a Zn/MnO2 Based Flexible Battery
    Crosby, JustOne
    Emani, Himanaga Rama Krishna Manoj
    Zhang, Xingzhe
    Maddipatla, Dinesh
    Ahmadi, Soma
    Wu, Qingliu
    Bazuin, Bradley
    Stoops, Matthew
    Atashbar, Massood
    2021 IEEE INTERNATIONAL FLEXIBLE ELECTRONICS TECHNOLOGY CONFERENCE (IFETC), 2021,
  • [46] Synthesis and Characterization of Sodium-Doped MnO2 for the Aqueous Asymmetric Supercapacitor Application
    Ou, Tzu-Man
    Hsu, Chun-Tsung
    Hu, Chi-Chang
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2015, 162 (05) : A5124 - A5132
  • [47] Novel MnO2/cobalt composites nanosheets array as efficient anode for asymmetric supercapacitor
    Qin, Tianfeng
    Peng, Shanglong
    Hao, Jiaxin
    Li, Haoqian
    Wen, Yuxiang
    Wang, Zilei
    Huang, Juanjuan
    Ma, Fei
    Hou, Juan
    Cao, Guozhong
    ELECTROCHIMICA ACTA, 2018, 292 : 39 - 46
  • [48] Snowflake-like core-shell α-MnO2@δ-MnO2 for high performance asymmetric supercapacitor
    Li, Yu
    Xu, Zongying
    Wang, Dawei
    Zhao, Jing
    Zhang, Huaihao
    ELECTROCHIMICA ACTA, 2017, 251 : 344 - 354
  • [49] Flexible α-MnO2 paper formed by millimeter-long nanowires for supercapacitor electrodes
    Yao, Wei
    Wang, Jing
    Li, Hao
    Lu, Yun
    JOURNAL OF POWER SOURCES, 2014, 247 : 824 - 830
  • [50] Carbon/λ-MnO2 composites for supercapacitor electrodes
    Malak-Polaczyk, A.
    Matei-Ghimbeu, C.
    Vix-Guterl, C.
    Frackowiak, E.
    JOURNAL OF SOLID STATE CHEMISTRY, 2010, 183 (04) : 969 - 974