Novel Composite Thick-Film Electrodes Consisted of Zinc Oxide and Silicon for Lithium-Ion Battery Anode

被引:1
|
作者
Usui, Hiroyuki [1 ]
Kono, Takamasa [1 ]
Sakaguchi, Hiroki [1 ]
机构
[1] Tottori Univ, Grad Sch Engn, Dept Chem & Biotechnol, Koyama, Tottori 6808552, Japan
来源
关键词
Zinc oxide; Silicon; Thick-film electrode; Conversion reaction; Gas-deposition method; Li-ion battery; LOW-TEMPERATURE; GAS-DEPOSITION; NEGATIVE ELECTRODES; AQUEOUS-SOLUTION; ZNO NANORODS; ELECTROCHEMICAL CHARACTERIZATION; OPTICAL-PROPERTIES; HIGH-CAPACITY; LI; SI;
D O I
暂无
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
As a novel anode for Li-ion battery, ZnO/Si composite thick-film electrodes with various ratios of ZnO:Si were prepared by a gas-deposition method using a commercial Si powder and a radial-shaped ZnO powder synthesized by a precipitation method. We investigated the effect of the ZnO amount and the radial morphology on the anode performance, comparing with charge-discharge properties of a ZnO electrode without Si. The ZnO electrode showed a stable cyclability and a moderate discharge capacity of 160-220 mA h g(-1) after the 20th cycle. The composite electrode of ZnO/Si with a ratio of 89/11 wt.% exhibited a good cycle stability after the 20th cycle and large discharge capacities exceeding the theoretical capacity of graphite until the 370th cycle. In contrast, a composite electrode containing of crushed ZnO showed a flat surface and poor performance. These results revealed that microstructure of the radial-shaped ZnO is very favorable for improving efficiencies of electrode reactions due to its high surface area, and is effective in accommodating the stresses induced by Li-insertion and Li-extraction in/from Si.
引用
收藏
页码:4322 / 4334
页数:13
相关论文
共 50 条
  • [31] Constructing Silicon Nanosheet/Graphite Nanosheet Composite from Retired Photovoltaic Silicon as Lithium-Ion Battery Anode
    Luo, Xiaolai
    Luo, Shuyang
    Zhou, Lisha
    Dai, Kai
    Lu, Luhua
    ENERGY TECHNOLOGY, 2025,
  • [32] Zinc oxide and germanium dioxide adsorbed on silicon nanocage as anodes in lithium-ion battery and potassium-ion battery
    Ashraf, Muhammad Aqeel
    Liu, Zhenling
    Li, Cheng
    Peng, Wan-Xi
    Najafi, Meysam
    IONICS, 2020, 26 (05) : 2211 - 2215
  • [33] Electrochemical properties of lithium vanadium oxide as an anode material for lithium-ion battery
    Choi, Nam-Soon
    Kim, Joon-Sup
    Yin, Ri-Zhu
    Kim, Sung-Soo
    MATERIALS CHEMISTRY AND PHYSICS, 2009, 116 (2-3) : 603 - 606
  • [34] Zinc oxide and germanium dioxide adsorbed on silicon nanocage as anodes in lithium-ion battery and potassium-ion battery
    Muhammad Aqeel Ashraf
    Zhenling Liu
    Cheng Li
    Wan-Xi Peng
    Meysam Najafi
    Ionics, 2020, 26 : 2211 - 2215
  • [35] Synthesis and electrochemical properties of zinc germanate nanowires as novel anode material for lithium-ion battery
    Xiao Chen
    Xiaqing Ran
    Yong Lu
    Chuanqi Feng
    Ionics, 2021, 27 : 4177 - 4184
  • [36] Silicon/Carbon Composite Anode Materials for Lithium-Ion Batteries
    Dou, Fei
    Shi, Liyi
    Chen, Guorong
    Zhang, Dengsong
    ELECTROCHEMICAL ENERGY REVIEWS, 2019, 2 (01) : 149 - 198
  • [37] Silicon/Carbon Composite Anode Materials for Lithium-Ion Batteries
    Fei Dou
    Liyi Shi
    Guorong Chen
    Dengsong Zhang
    Electrochemical Energy Reviews, 2019, 2 : 149 - 198
  • [38] Synthesis and electrochemical properties of zinc germanate nanowires as novel anode material for lithium-ion battery
    Chen, Xiao
    Ran, Xiaqing
    Lu, Yong
    Feng, Chuanqi
    IONICS, 2021, 27 (10) : 4177 - 4184
  • [39] A novel anode material for lithium-ion batteries: silicon nanoparticles and graphene composite films
    Zhang, P. B.
    You, Y.
    Wang, C.
    Fang, X. H.
    Ren, W.
    Yang, L. Y.
    Chen, X. Y.
    2019 INTERNATIONAL CONFERENCE ON NEW ENERGY AND FUTURE ENERGY SYSTEM, 2019, 354
  • [40] Facile synthesis of reduced graphene oxide-porous silicon composite as superior anode material for lithium-ion battery anodes
    Jiao, Lian-Sheng
    Liu, Jin-Yu
    Li, Hong-Yan
    Wu, Tong-Shun
    Li, Fenghua
    Wang, Hao-Yu
    Niu, Li
    JOURNAL OF POWER SOURCES, 2016, 315 : 9 - 15