Enhanced electrochemical performance of ZnMoO4/reduced graphene oxide composites as anode materials for lithium-ion batteries

被引:54
作者
Xue, Ruinan [1 ]
Hong, Wei [1 ]
Pan, Zeng [1 ]
Jin, Wei [2 ]
Zhao, Huilin [1 ]
Song, Yahui [1 ]
Zhou, Jingkuo [1 ]
Liu, Yu [1 ]
机构
[1] Tianjin Univ, Dept Chem, Tianjin 300072, Peoples R China
[2] Chinese Acad Sci, Inst Proc Engn, Beijing 100190, Peoples R China
基金
美国国家科学基金会;
关键词
Zinc molybdate; reduced graphene oxide; hydrothermal synthesis; lithium-ion batteries; anode materials; HIGH-CAPACITY; CYCLIC PERFORMANCE; BINDER-FREE; ZNCO2O4; COMOO4; ELECTRODES; SUPERCAPACITORS; NANOCOMPOSITES; NANOPARTICLES; ALPHA-FE2O3;
D O I
10.1016/j.electacta.2016.11.045
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
ZnMoO4/reduced graphene oxide composites (ZnMoO4/rGO) were successfully prepared by a simple one pot hydrothermal method, in which the synthesis of ZnMoO4 irregular plate-like crystals and the reduction of graphene oxide to rGO were simultaneously achieved. The XRD, SEM, TEM, TGA and XPS measurements were performed to illustrate the structure properties of as-prepared ZnMoO4 and ZnMoO4/rGO. It has been demonstrated that the ZnMoO4/rGO composites exhibits excellent electrochemical performance of high capacity and good stability as the anode materials of lithium ion batteries. The initial discharge capacity is 2391.2 mAhg(-1) at a current density of 100 mAr(-1). During the cycle performance test, the discharge capacity increased from the second cycle capacity of 1030 mAhg(-1) to 1454.4 inAhg(-1) after 26 cycles at 100 mAg(-1). And after 100 cycles, the retention of capacity is 61.36%. The advanced electrochemical performance can be attributed to the introduction of rGO sheets, which could greatly increase the conductivity of active materials and provide the electrons transfer paths for the ZnMoO4/rGO electrode. Besides, the rGO sheet wrapped ZnMoO4 crystals would buffer the volume changes during charge-discharge cycles. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:838 / 844
页数:7
相关论文
共 45 条
[1]   Chemically engineered graphene oxide as high performance cathode materials for Li-ion batteries [J].
Ai, Wei ;
Du, Zhuzhu ;
Fan, Zhanxi ;
Jiang, Jian ;
Wang, Yanlong ;
Zhang, Hua ;
Xie, Linghai ;
Huang, Wei ;
Yu, Ting .
CARBON, 2014, 76 :148-154
[2]   Role of Oxygen Functional Groups in Carbon Nanotube/Graphene Freestanding Electrodes for High Performance Lithium Batteries [J].
Byon, Hye Ryung ;
Gallant, Betar M. ;
Lee, Seung Woo ;
Shao-Horn, Yang .
ADVANCED FUNCTIONAL MATERIALS, 2013, 23 (08) :1037-1045
[3]   A combined theoretical and experimental study of electronic structure and optical properties of β-ZnMoO4 microcrystals [J].
Cavalcante, L. S. ;
Moraes, E. ;
Almeida, M. A. P. ;
Dalmaschio, C. J. ;
Batista, N. C. ;
Varela, J. A. ;
Longo, E. ;
Li, M. Siu ;
Andres, J. ;
Beltran, A. .
POLYHEDRON, 2013, 54 :13-25
[4]   Interconnected Network of CoMoO4 Submicrometer Particles As High Capacity Anode Material for Lithium Ion Batteries [J].
Cherian, Christie T. ;
Reddy, M. V. ;
Haur, Sow Chorng ;
Chowdari, B. V. R. .
ACS APPLIED MATERIALS & INTERFACES, 2013, 5 (03) :918-923
[5]   XPS study of as-prepared and reduced molybdenum oxides [J].
Choi, JG ;
Thompson, LT .
APPLIED SURFACE SCIENCE, 1996, 93 (02) :143-149
[6]   High capacity anode materials for Li-ion batteries based on spinel metal oxides AMn2O4 (A = Co, Ni, and Zn) [J].
Courtel, Fabrice M. ;
Duncan, Hugues ;
Abu-Lebdeh, Yaser ;
Davidson, Isobel J. .
JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (27) :10206-10218
[7]   One-pot synthesis of ZnFe2O4/C hollow spheres as superior anode materials for lithium ion batteries [J].
Deng, Yuanfu ;
Zhang, Qiumei ;
Tang, Shidi ;
Zhang, Leiting ;
Deng, Shengnan ;
Shi, Zhicong ;
Chen, Guohua .
CHEMICAL COMMUNICATIONS, 2011, 47 (24) :6828-6830
[8]   Growth of Ultrathin ZnCo2O4 Nanosheets on Reduced Graphene Oxide with Enhanced Lithium Storage Properties [J].
Gao, Guoxin ;
Wu, Hao Bin ;
Dong, Bitao ;
Ding, Shujiang ;
Lou, Xiong Wen .
ADVANCED SCIENCE, 2015, 2 (1-2)
[9]   A New Partially Reduced Graphene Oxide Nanosheet/Polyaniline Nanowafer Hybrid as Supercapacitor Electrode Material [J].
Gao, Zan ;
Yang, Wanlu ;
Wang, Jun ;
Wang, Bin ;
Li, Zhanshuang ;
Liu, Qi ;
Zhang, Milin ;
Liu, Lianhe .
ENERGY & FUELS, 2013, 27 (01) :568-575
[10]   Graphene: Status and Prospects [J].
Geim, A. K. .
SCIENCE, 2009, 324 (5934) :1530-1534