MnO2 nanoflakes anchored on reduced graphene oxide nanosheets as high performance anode materials for lithium-ion batteries

被引:21
|
作者
Cao, Yong [1 ]
Lin, Xionggui [1 ]
Zhang, Chenglong [1 ]
Yang, Cheng [1 ]
Zhang, Qian [1 ]
Hu, Weiqiang [1 ]
Zheng, Mingsen [1 ]
Dong, Quanfeng [1 ]
机构
[1] Xiamen Univ, Dept Chem, Coll Chem & Chem Engn, State Key Lab Phys Chem Solid Surfaces, Xiamen 361005, Fujian, Peoples R China
关键词
ALPHA-MNO2; NANORODS; IN-SITU; FABRICATION; NANOPARTICLES; STORAGE; ENERGY; COMPOSITES; CAPACITY;
D O I
10.1039/c4ra02838d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A MnO2 nanoflake-reduced graphene oxide (MnO2-rGO) composite was synthesized by a facile solution method. The composite exhibited excellent electrochemical performance with a reversible capacity of 1430 mA h g(-1) and 520 mA h g(-1) at current densities of 0.1 A g(-1) and 10 A g(-1), respectively. MnO2 in the composite was proved to be fully activated and went through a complete conversion reaction. The improved kinetics in the MnO2-rGO composite electrode were evidenced by Electrochemical Impedance Spectroscopy (EIS) results, accounting for its extraordinary electrochemical properties compared with that in a simple MnO2-rGO mixture electrode. Due to the uniform dispersion and firm anchoring of MnO2 nanoflakes on the rGO surface, the volume expansion of MnO2 during the charge-discharge process was significantly alleviated. It showed excellent cyclic performance with an extremely large capacity of 1000 mA h g(-1) maintained after 200 cycles at the current density of 1 A g(-1).
引用
收藏
页码:30150 / 30155
页数:6
相关论文
共 50 条
  • [1] Reduced graphene oxide anchored with MnO2 nanorods as anode for high rate and long cycle Lithium ion batteries
    Ma, Zhaofei
    Zhao, Tianbo
    ELECTROCHIMICA ACTA, 2016, 201 : 165 - 171
  • [2] Strongly anchored MnO nanoparticles on graphene as high-performance anode materials for lithium-ion batteries
    Yanliang Qin
    Bowen Wang
    Sipeng Jiang
    Qingsong Jiang
    Chenghao Huang
    Hai Chao Chen
    Ionics, 2020, 26 : 3315 - 3323
  • [3] Strongly anchored MnO nanoparticles on graphene as high-performance anode materials for lithium-ion batteries
    Qin, Yanliang
    Wang, Bowen
    Jiang, Sipeng
    Jiang, Qingsong
    Huang, Chenghao
    Chen, Hai Chao
    IONICS, 2020, 26 (07) : 3315 - 3323
  • [4] Evaluation and Characterization of Reduced Graphene Oxide Nanosheets as Anode Materials for Lithium-Ion Batteries
    Fu, Changjing
    Zhao, Guogang
    Zhang, Haijun
    Li, Shuang
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2013, 8 (05): : 6269 - 6280
  • [5] MnO nanoparticles anchored on graphene nanosheets via in situ carbothermal reduction as high-performance anode materials for lithium-ion batteries
    Qiu, Danfeng
    Ma, Luyao
    Zheng, Mingbo
    Lin, Zixia
    Zhao, Bin
    Wen, Zhe
    Hu, Zibo
    Pu, Lin
    Shi, Yi
    MATERIALS LETTERS, 2012, 84 : 9 - 12
  • [6] CuO ultrathin nanosheets decorated reduced graphene oxide as a high performance anode for lithium-ion batteries
    Pu, Fangzhao
    Kong, Chuncai
    Lv, Jian
    BoMa
    Zhang, Wanqi
    Zhang, Xiaojing
    Yang, Sen
    Jin, Hong
    Yang, Zhimao
    JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 805 : 355 - 362
  • [7] Delamination of Birnessite MnO2 into Nanosheets as Anode Materials for Lithium Ion Batteries
    Ao Xia
    Jue Yi
    Wanru Yu
    Xin Yang
    Chenpeng Zhao
    Journal of Harbin Institute of Technology(New series), 2021, 28 (04) : 77 - 83
  • [8] MnO2/Graphene Nanocomposite for Use in High Performance Lithium-Ion Batteries
    Zhu, Xiaoyi
    Li, Jianjiang
    She, Xilin
    Xia, Linhua
    ADVANCES IN APPLIED SCIENCE, ENGINEERING AND TECHNOLOGY, 2013, 709 : 157 - 160
  • [9] Hydrothermally enhanced MnO/reduced graphite oxide composite anode materials for high performance lithium-ion batteries
    Zou, Bang-Kun
    Zhang, Yon-Yu
    Wang, Jia-Yi
    Liang, Xin
    Ma, Xiao-Hang
    Chen, Chun-Hua
    ELECTROCHIMICA ACTA, 2015, 167 : 25 - 31
  • [10] SnO2 nanoparticles anchored on graphene oxide as advanced anode materials for high-performance lithium-ion batteries
    Ruiping Liu
    Ning Zhang
    Xinyu Wang
    Chenhui Yang
    Hui Cheng
    Hanqing Zhao
    Frontiers of Materials Science, 2019, 13 : 186 - 192