The Use of Succinonitrile as an Electrolyte Additive for Composite-Fiber Membranes in Lithium-Ion Batteries

被引:7
|
作者
Villarreal, Jahaziel [1 ]
Chavez, Roberto Orrostieta [1 ]
Chopade, Sujay A. [2 ,3 ]
Lodge, Timothy P. [2 ,3 ]
Alcoutlabi, Mataz [1 ]
机构
[1] Univ Texas Rio Grande Valley, Dept Mech Engn, Edinburg, TX 78539 USA
[2] Univ Minnesota, Dept Chem Engn & Mat Sci, Minneapolis, MN 55455 USA
[3] Univ Minnesota, Dept Chem, Minneapolis, MN 55455 USA
关键词
ionic liquids; succinonitrile; electrolyte; lithium ion batteries; composite fibers; mixtures; LI-ION; LIQUID ELECTROLYTES; THERMAL RUNAWAY; ANODE MATERIALS; TRANSPORT; NANOFIBERS; MIXTURES;
D O I
10.3390/membranes10030045
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the present work, the effect of temperature and additives on the ionic conductivity of mixed organic/ionic liquid electrolytes (MOILEs) was investigated by conducting galvanostatic charge/discharge and ionic conductivity experiments. The mixed electrolyte is based on the ionic liquid (IL) (EMI/TFSI/LiTFSI) and organic solvents EC/DMC (1:1 v/v). The effect of electrolyte type on the electrochemical performance of a LiCoO2 cathode and a SnO2/C composite anode in lithium anode (or cathode) half-cells was also investigated. The results demonstrated that the addition of 5 wt.% succinonitrile (SN) resulted in enhanced ionic conductivity of a 60% EMI-TFSI 40% EC/DMC MOILE from similar to 14 mS.cm(-1) to similar to 26 mS.cm(-1) at room temperature. Additionally, at a temperature of 100 degrees C, an increase in ionic conductivity from similar to 38 to similar to 69 mS.cm(-1) was observed for the MOILE with 5 wt% SN. The improvement in the ionic conductivity is attributed to the high polarity of SN and its ability to dissolve various types of salts such as LiTFSI. The galvanostatic charge/discharge results showed that the LiCoO2 cathode with the MOILE (without SN) exhibited a 39% specific capacity loss at the 50th cycle while the LiCoO2 cathode in the MOILE with 5 wt.% SN showed a decrease in specific capacity of only 14%. The addition of 5 wt.% SN to the MOILE with a SnO2/C composite-fiber anode resulted in improved cycling performance and rate capability of the SnO2/C composite-membrane anode in lithium anode half-cells. Based on the results reported in this work, a new avenue and promising outcome for the future use of MOILEs with SN in lithium-ion batteries (LIBs) can be opened.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] 2,2-Dimethoxy-propane as electrolyte additive for lithium-ion batteries
    Chang, Chia-Chin
    Her, Li-Jane
    Chen, Li-Chia
    Lee, Yen-Yu
    Liu, Shyh-Jiun
    Tien, Hsien-Ju
    JOURNAL OF POWER SOURCES, 2007, 163 (02) : 1059 - 1063
  • [32] Tris(trimethylsilyl) borate as electrolyte additive to improve performance of lithium-ion batteries
    Cai, Zhijun
    Liu, Yanbo
    Zhao, Junhong
    Li, Lei
    Zhang, Yongming
    Zhang, Jun
    JOURNAL OF POWER SOURCES, 2012, 202 : 341 - 346
  • [33] Plasticized Polymer Electrolyte Membranes Based on PEO/PVdF-HFP for Use as an Effective Electrolyte in Lithium-ion Batteries
    Prabakaran, Pradeepa
    Manimuthu, Ramesh Prabhu
    Gurusamy, Sowmya
    Sebasthiyan, Edwinraj
    CHINESE JOURNAL OF POLYMER SCIENCE, 2017, 35 (03) : 407 - 421
  • [34] Plasticized polymer electrolyte membranes based on PEO/PVdF-HFP for use as an effective electrolyte in lithium-ion batteries
    Pradeepa Prabakaran
    Ramesh Prabhu Manimuthu
    Sowmya Gurusamy
    Edwinraj Sebasthiyan
    Chinese Journal of Polymer Science, 2017, 35 : 407 - 421
  • [35] Lithium-silica nanosalt as a low-temperature electrolyte additive for lithium-ion batteries
    Hamenu, Louis
    Lee, Hae Soo
    Latifatu, Mohammed
    Kim, Kwang Man
    Park, Jongwook
    Baek, Yong Gu
    Ko, Jang Myoun
    Kaner, Richard B.
    CURRENT APPLIED PHYSICS, 2016, 16 (06) : 611 - 617
  • [36] Cellular porous polyvinylidene fluoride composite membranes for lithium-ion batteries
    Huang, Xiaosong
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2013, 17 (03) : 591 - 597
  • [37] Lithium-Ion Conducting Electrolyte Salts for Lithium Batteries
    Aravindan, Vanchiappan
    Gnanaraj, Joe
    Madhavi, Srinivasan
    Liu, Hua-Kun
    CHEMISTRY-A EUROPEAN JOURNAL, 2011, 17 (51) : 14326 - 14346
  • [38] Cellular porous polyvinylidene fluoride composite membranes for lithium-ion batteries
    Xiaosong Huang
    Journal of Solid State Electrochemistry, 2013, 17 : 591 - 597
  • [39] PVDF/PVB composite polymer electrolyte membranes with high conductivity and excellent cycling performance for lithium-ion batteries
    Ren, Yijin
    Yang, Yaojun
    Zhang, Jun
    Ma, Yanbin
    Chen, Congbo
    JOURNAL OF APPLIED POLYMER SCIENCE, 2025, 142 (06)
  • [40] A review on electrolyte additives for lithium-ion batteries
    Zhang, Sheng Shui
    JOURNAL OF POWER SOURCES, 2006, 162 (02) : 1379 - 1394