Strain Evolution in Lithium Manganese Oxide Electrodes

被引:0
|
作者
Ö. Ö. Çapraz
S. Rajput
S. White
N. R. Sottos
机构
[1] University of Illinois at Urbana-Champaign,Department of Material Science and Engineering
[2] Beckman Institute of Science and Technology,Aerospace Engineering
[3] University of Illinois at Urbana-Champaign,undefined
来源
Experimental Mechanics | 2018年 / 58卷
关键词
Cathode-electrolyte Interface; Strain measurement; Lithium manganese oxide; Deformation; Surface reactions;
D O I
暂无
中图分类号
学科分类号
摘要
Lithium manganese oxide, LiMn2O4 (LMO) is a promising cathode material, but is hampered by significant capacity fade due to instability of the electrode-electrolyte interface, manganese dissolution into the electrolyte and subsequent mechanical degradation of the electrode. In this work, electrochemically-induced strains in composite LMO electrodes are measured using the digital image correlation (DIC) technique and compared with electrochemical impedance spectroscopy (EIS) measurements of surface resistance for different scan rates. Distinct, irreversible strain variations are observed during the first delithiation cycle. The changes in strain and surface resistance are highly sensitive to the electrochemical changes occurring during the first cycle and correlate with prior reports of the removal of the native surface layer and the formation of cathode-electrolyte interface layer on the electrode surface. A large capacity fade is observed with increasing cycle number at high scan rates. Interestingly, the total capacity fade scales proportionately to the strain generated after each lithiation and delithiation cycle. The simultaneous reduction in capacity and strain is attributed to chemo-mechanical degradation of the electrode. The in situ strain measurements provide new insight into the electrochemical-induced volumetric changes in LMO electrodes with progressing cycling and may provide guidance for materials-based strategies to reduce strain and capacity fade.
引用
收藏
页码:561 / 571
页数:10
相关论文
共 50 条
  • [21] Visualization of lithium-ion transport and phase evolution within and between manganese oxide nanorods
    Xu, Feng
    Wu, Lijun
    Meng, Qingping
    Kaltak, Merzuk
    Huang, Jianping
    Durham, Jessica L.
    Fernandez-Serra, Marivi
    Sun, Litao
    Marschilok, Amy C.
    Takeuchi, Esther S.
    Takeuchi, Kenneth J.
    Hybertsen, Mark S.
    Zhu, Yimei
    NATURE COMMUNICATIONS, 2017, 8
  • [22] Visualization of lithium-ion transport and phase evolution within and between manganese oxide nanorods
    Feng Xu
    Lijun Wu
    Qingping Meng
    Merzuk Kaltak
    Jianping Huang
    Jessica L. Durham
    Marivi Fernandez-Serra
    Litao Sun
    Amy C. Marschilok
    Esther S. Takeuchi
    Kenneth J. Takeuchi
    Mark S. Hybertsen
    Yimei Zhu
    Nature Communications, 8
  • [23] The hydrothermal synthesis of sodium manganese oxide and a lithium vanadium oxide
    Chen, RJ
    Chirayil, T
    Zavalij, P
    Whittingham, MS
    SOLID STATE IONICS, 1996, 86-8 : 1 - 7
  • [24] Discontinuous and Continuous Processing of Low-Solvent Battery Slurries for Lithium Nickel Cobalt Manganese Oxide Electrodes
    Dreger, Henning
    Bockholt, Henrike
    Haselrieder, Wolfgang
    Kwade, Arno
    JOURNAL OF ELECTRONIC MATERIALS, 2015, 44 (11) : 4434 - 4443
  • [25] LITHIUM-MANGANESE OXIDE RECHARGEABLE BATTERY
    DAGANI, R
    CHEMICAL & ENGINEERING NEWS, 1993, 71 (01) : 34 - 35
  • [26] Dynamic imaging of crystalline defects in lithium-manganese oxide electrodes during electrochemical activation to high voltage
    Li, Qianqian
    Yao, Zhenpeng
    Lee, Eungje
    Xu, Yaobin
    Thackeray, Michael M.
    Wolverton, Chris
    Dravid, Vinayak P.
    Wu, Jinsong
    NATURE COMMUNICATIONS, 2019, 10 (1)
  • [27] Countering Voltage Decay, Redox Sluggishness, and Calendering Incompatibility by Near-Zero-Strain Interphase in Lithium-Rich, Manganese-Based Layered Oxide Electrodes
    He, Weitao
    Zhang, Chunxiao
    Wang, Meiyu
    Wei, Bo
    Zhu, Yuelei
    Wu, Jianghua
    Liang, Chaoping
    Chen, Libao
    Wang, Peng
    Wei, Weifeng
    ADVANCED FUNCTIONAL MATERIALS, 2022, 32 (29)
  • [28] Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries
    Song, Jinju
    Gim, Jihyeon
    Park, Sohyun
    Kim, Jaekook
    ELECTROCHIMICA ACTA, 2018, 261 : 42 - 48
  • [29] Layered manganese oxide intergrowth electrodes for rechargeable lithium batteries.: 1.: Substitution with Co or Ni
    Dollé, M
    Patoux, S
    Doeff, MM
    CHEMISTRY OF MATERIALS, 2005, 17 (05) : 1036 - 1043
  • [30] Confined growth of lithium manganese oxide nanoparticles
    Hyun Kyoo Park
    Hana Rah
    Dong Jun Kang
    Uong Chun
    Sun-Geon Kim
    Journal of Sol-Gel Science and Technology, 2013, 67 : 464 - 472