Journal of Inorganic Materials ›› 2013, Vol. 28 ›› Issue (5): 507-514.DOI: 10.3724/SP.J.1077.2013.12316

• Orginal Article • Previous Articles     Next Articles

Research on the LiODFB Electrolyte’s Electrochemical Performance and Its Compatibility with LTO Electrode

ZHOU Hong-Ming1,2, LIU Fu-Rong1, LI Jian1,2, FANG Zhen-Qi1, LI Yan-Fen1, ZHU Yu-Hua1   

  1. (1.School of Materials Science and Engineering, Central South University, Changsha 410083, China; 2.Hunan Zhengyuan Institute for Energy Storage Materials and Devices, Changsha 410083, China)
  • Received:2012-05-15 Revised:2012-07-03 Published:2013-05-10 Online:2013-04-22

Abstract:

1 mol/L LiODFB (LiPF6) EC+DMC+EMC (1:1:1 (wt%)) electrolyte’s thermal stability and corrosivity to the aluminum foil were tested by the electrochemical workstation. Cyclic voltammogram, electrochemical impedance spectroscopy rate and cycle performances of LTO/Li battery were measured. The compatibility between LiFePO4/LTO electrode and electrolyte was studied. Results show that at room temperature and 60℃, the stability of LiODFB electrolyte and its corrosivity to the aluminum foil are superior to that of LiPF6 electrolyte. LTO/Li cells with either LiODFB or LiPF6 for electrolyte have simple REDOX peak, and their first charge-discharge curves have stable charge-discharge platform. The difference battery performance between LiODFB and LiPF6 with LiFePO4/LTO as electrode at 0.5C and 1C rates is not significant at room temperature. LiODFB battery exhibits better cycle performance than LiPF6 battery at room temperature and especially at 60℃.

Key words: lithium di?uoro(oxalato)borate, lithium titanate, electrochemical performance, lithium battery

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