The Effect of TiO2 Nanoparticles and the Liquid-Phase Therapy on the Resistance of the Interphase Lithium/Polymer Electrolyte with the Introduction of Ionic Liquid

被引:0
|
作者
Baymuratova, G. R. [1 ]
Yudina, A. V. [1 ]
Khatmullina, K. G. [1 ,2 ]
Slesarenko, A. A. [1 ]
Yarmolenko, O. V. [1 ]
机构
[1] Russian Acad Sci, Fed Res Ctr Problems Chem Phys & Med Chem, Chernogolovka, Russia
[2] Natl Res Univ Moscow Energy Inst, Moscow, Russia
关键词
lithium anode; LiFePO4; cathode; polymer electrolyte; 1-ethyl-3-methylimidazolium tetrafluoroborate; TiO2; nanoparticles; electrochemical impedance; charge-discharge characteristics;
D O I
10.1134/S102319352470037X
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
It is studied how the treatment of a metal lithium surface with a 1 M LiN(CF3SO2)(2) solution in the 1,3-dioxolane/1,2-dimethoxyethane (2 : 1) mixture affects the resistance of the interphases formed by lithium with the polymer and nanocomposite electrolytes based on the 1-ethyl-3-methylimidazolium tetrafluoroborate ionic liquid. The liquid-phase therapy is shown to reduce the resistance at the Li/electrolyte interphase by a factor of 2.5 at room temperature and extend the working temperature range to -30 degrees C. The introduction of TiO2 nanoparticles into the polymer electrolyte, along with the liquid-phase therapy of both the cathode and the Li-anode, provides a high and stable discharge capacity of the Li//LiFePO4 battery for 100 charge-discharge cycles.
引用
收藏
页码:807 / 812
页数:6
相关论文
共 50 条
  • [1] Effect of zwitterion on the lithium solid electrolyte interphase in ionic liquid electrolytes
    Byrne, N.
    Howlett, P. C.
    MacFarlane, D. R.
    Smith, M. E.
    Howes, A.
    Hollenkamp, A. F.
    Bastow, T.
    Hale, P.
    Forsyth, M.
    JOURNAL OF POWER SOURCES, 2008, 184 (01) : 288 - 296
  • [2] Nanocomposite polymer electrolyte based on rice starch/ionic liquid/TiO2 nanoparticles for solar cell application
    Khanmirzaei, M. H.
    Ramesh, S.
    MEASUREMENT, 2014, 58 : 68 - 72
  • [3] Ionic Equilibria for Synthesis of TiO2 Thin Films by the Liquid-Phase Deposition
    Maki, Hideshi
    Okumura, Yuzo
    Ikuta, Hirotaka
    Mizuhata, Minoru
    JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (22): : 11964 - 11974
  • [4] Optical and dielectric properties of PVC/TiO2/TBAI ionic liquid polymer electrolyte
    Heiba, Zein K.
    El-naggar, A. M.
    Kamal, A. M.
    Abd-Elkader, Omar H.
    Mohamed, Mohamed Bakr
    OPTICAL MATERIALS, 2023, 139
  • [5] Influence of TiO2 and SiO2 Nanoparticles on the Properties of Polymer Electrolytes Based on Ionic Liquid and Lithium Salt
    O. V. Yarmolenko
    K. G. Khatmullina
    G. R. Baymuratova
    N. A. Emelianov
    R. K. Baymuratova
    A. V. Yudina
    High Energy Chemistry, 2023, 57 : S375 - S382
  • [6] Influence of TiO2 and SiO2 Nanoparticles on the Properties of Polymer Electrolytes Based on Ionic Liquid and Lithium Salt
    Yarmolenko, O. V.
    Khatmullina, K. G.
    Baymuratova, G. R.
    Emelianov, N. A.
    Baymuratova, R. K.
    Yudina, A. V.
    HIGH ENERGY CHEMISTRY, 2023, 57 (SUPPL 2) : S375 - S382
  • [7] Effect of TiO2 nanoparticles dispersion on ionic behaviour in nematic liquid crystal
    Yadav, Satya Prakash
    Manohar, Rajiv
    Singh, Shri
    LIQUID CRYSTALS, 2015, 42 (08) : 1095 - 1101
  • [8] Liquid-phase photocatalytic reaction on TiO2 thin film
    Watanabe, A
    Nazir, M
    Kumazawa, H
    CHEMICAL ENGINEERING COMMUNICATIONS, 2001, 187 : 55 - 64
  • [9] Liquid-phase deposited TiO2 thin films on GaN
    Wu, Tsu-Yi
    Sze, Po-Wen
    Huang, Jian-Jiun
    Chien, Wei-Chi
    Lin, Shun-Kuan
    Hu, Chih-Chun
    Tsai, Ming-Ji
    Wu, Chia-Ju
    Wang, Yeong-Her
    EDSSC: 2007 IEEE INTERNATIONAL CONFERENCE ON ELECTRON DEVICES AND SOLID-STATE CIRCUITS, VOLS 1 AND 2, PROCEEDINGS, 2007, : 649 - +
  • [10] Nanocomposite Polymer Gel Electrolyte Based on TiO2 Nanoparticles for Lithium Batteries
    Slesarenko, Nikita A.
    Chernyak, Alexander V.
    Khatmullina, Kyunsylu G.
    Baymuratova, Guzaliya R.
    Yudina, Alena V.
    Tulibaeva, Galiya Z.
    Shestakov, Alexander F.
    Volkov, Vitaly I.
    Yarmolenko, Olga V.
    MEMBRANES, 2023, 13 (09)