The effects of Ni on inhibiting the separation of Cu during the lithiation of Cu6Sn5 lithium-ion battery anodes

被引:16
|
作者
Tan, Xin F. [1 ]
McDonald, Stuart D. [1 ]
Gu, Qinfen [2 ]
Wang, Lianzhou [3 ,4 ]
Matsumura, Syo [5 ]
Nogita, Kazuhiro [1 ]
机构
[1] Univ Queensland, NS CMEM, Sch Mech & Min Engn, Brisbane, Qld 4072, Australia
[2] Australian Synchrotron, Powder Diffract Beamline, Melbourne, Vic 3168, Australia
[3] Univ Queensland, Nanomat Ctr, Sch Chem Engn, Brisbane, Qld 4072, Australia
[4] Univ Queensland, Australian Inst Bioengn & Nanotechnol, Brisbane, Qld 4072, Australia
[5] Kyushu Univ, Dept Appl Quantum Phys & Nucl Engn, Fukuoka, Fukuoka 8190395, Japan
关键词
Lithium-ion battery; Anode; Cu6Sn5; Manufacturing; In-situ synchrotron X-ray powder diffraction; Transmission electron microscopy; NEGATIVE ELECTRODE; THIN-FILM; X-RAY; TIN; LI; TRANSFORMATIONS; PERFORMANCE; NI)(6)SN-5; DIFFUSION; ELEMENTS;
D O I
10.1016/j.jpowsour.2019.227085
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sn-based lithium-ion battery (LIB) anodes have a lower risk of lithium dendrite formation and a higher storage capacity of 993 mAh g(-1) vs. 372 mAh g(-1) compared to carbon-based anodes. Alloying Sn with Cu can reduce the reaction stresses in the anode, and Cu6Sn5 is therefore a promising candidate material to replace carbon-based anodes. However, the separation of Cu during the second stage of the lithiation reaction results in slow kinetics and degrades the cyclability of the anodes. This study proposes an effective method to inhibit the separation of Cu via the addition of Ni. Ni occupies the Cu positions in the Cu6Sn5 crystal structures to form (Cu, Ni)(6)Sn-5, and therefore alters the crystal structure of the anode, leading to the formation of superstructures. As a result, Ni partially blocks the diffusion pathways of Li and therefore inhibits the Cu separation reaction, while the superstructure provides additional Li storage sites to increase the capacity of the anodes. Ni also refines the grain size of Cu6Sn5, leading to faster kinetics. The reaction mechanisms of the modified anodes are confirmed by insitu synchrotron X-ray powder diffraction and ex-situ high voltage transmission electron microscopy.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Evidence of Copper Separation in Lithiated Cu6Sn5 Lithium-Ion Battery Anodes
    Tan, Xin F.
    Yang, Wenhui
    Aso, Kohei
    Matsumura, Syo
    McDonald, Stuart D.
    Nogita, Kazuhiro
    [J]. ACS APPLIED ENERGY MATERIALS, 2020, 3 (01): : 141 - 145
  • [2] A theoretical and experimental study of the lithiation of η′-Cu6Sn5 in a lithium-ion battery
    Sharma, S
    Fransson, L
    Sjöstedt, E
    Nordström, L
    Johansson, B
    Edström, K
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2003, 150 (03) : A330 - A334
  • [3] The Effects of Trace Sb and Zn Additions on Cu6Sn5 Lithium-Ion Battery Anodes
    Tan, Xin Fu
    Yong, Adrian Xiao Bin
    Gu, Qinfen
    Yang, Wenhui
    Aso, Kohei
    Matsumura, Syo
    McDonald, Stuart D.
    Nogita, Kazuhiro
    [J]. JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2020, 20 (08) : 5182 - 5191
  • [4] Microspherical Cu6Sn5 alloy anode for lithium-ion battery
    Fan, Xiao-Yong
    Ke, Fu-Sheng
    Wei, Guo-Zhen
    Huang, Ling
    Sun, Shi-Gang
    [J]. ELECTROCHEMICAL AND SOLID STATE LETTERS, 2008, 11 (11) : A195 - A197
  • [5] Cobalt-doped Cu6Sn5 lithium-ion battery anodes with enhanced electrochemical properties
    Tan, Xin F.
    Tao, Shiwei
    Ran, Lingbing
    Knibbe, Ruth
    Nogita, Kazuhiro
    [J]. NANO SELECT, 2022, 3 (08): : 1264 - 1276
  • [6] Three-dimensional porous Cu6Sn5 alloy anodes for lithium-ion batteries
    Fan Xiao-Yong
    Zhuang Quan-Chao
    Jiang Hong-Hong
    Huang Ling
    Dong Quan-Feng
    Sun Shi-Gang
    [J]. ACTA PHYSICO-CHIMICA SINICA, 2007, 23 (07) : 973 - 977
  • [7] Characterisation of lithium-ion battery anodes fabricated via in-situ Cu6Sn5 growth on a copper current collector
    Tan, Xin Fu
    McDonald, Stuart D.
    Gu, Qinfen
    Hu, Yuxiang
    Wang, Lianzhou
    Matsumura, Syo
    Nishimura, Tetsuro
    Nogita, Kazuhiro
    [J]. JOURNAL OF POWER SOURCES, 2019, 415 : 50 - 61
  • [8] Electrochemically enhanced Cu6Sn5 anodes with tailored crystal orientation and ordered atomic arrangements for lithium-ion battery applications
    Tan, Xin F.
    Gu, Qinfen
    Qu, Dongdong
    Yong, Adrian X. B.
    Yang, Wenhui
    McDonald, Stuart D.
    Matsumura, Syo
    Nogita, Kazuhiro
    [J]. ACTA MATERIALIA, 2020, 201 : 341 - 349
  • [9] Simple preparation of Cu6Sn5/Sn composites as anode materials for lithium-ion batteries
    Han, QiGang
    Yi, Zheng
    Cheng, Yong
    Wu, Yaoming
    Wang, Limin
    [J]. RSC ADVANCES, 2016, 6 (19): : 15279 - 15285
  • [10] Immersion-plated Cu6Sn5/Sn composite film anode for lithium ion battery
    Zhaodong Wang
    Zhongqiang Shan
    Jianhua Tian
    Wenlong Huang
    Didi Luo
    Xi Zhu
    Shuxian Meng
    [J]. Journal of Materials Science, 2017, 52 : 6020 - 6033