Dual functioned BiOF-coated Li[Li0.1Al0.05Mn1.85]O4 for lithium batteries

被引:66
|
作者
Lee, Ki-Soo [2 ]
Myung, Seung-Taek [1 ]
Amine, Khalil [3 ]
YashiroB, Hitoshi [1 ]
Sun, Yang-Kook [2 ]
机构
[1] Iwate Univ, Dept Chem Engn, Morioka, Iwate 0208551, Japan
[2] Hanyang Univ, Dept Chem Engn, Ctr Informat & Commun Mat, Seoul 133791, South Korea
[3] Argonne Natl Lab, Electrochem Technol Program, Div Chem Engn, Argonne, IL 60439 USA
关键词
ION SECONDARY BATTERIES; ELECTROCHEMICAL CYCLING BEHAVIOR; CATHODE MATERIALS; TEMPERATURE PERFORMANCE; ELEVATED-TEMPERATURE; LIMN2O4; CATHODE; SPINEL; IMPROVEMENT; DISSOLUTION; ELECTRODE;
D O I
10.1039/b819224c
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
Spinel-type lithium manganese oxides have shown considerable promise for the positive electrode in lithium batteries but have suffered from poor performance at high temperatures (40-60 degrees C). The electrochemical properties of BiOF-coated spinel Li[Li0.1Al0.05Mn1.85]O-4 at elevated temperatures (55 degrees C) were investigated. BiOF nanoparticles were well coated on spinel Li[Li0.1Al0.05Mn1.85]O-4, as confirmed by scanning and transmission electron microscopy. The BiOF-coated spinel Li[Li0.1Al0.05Mn1.85]O-4 electrode had excellent capacity retention at 55 degrees C, maintaining its initial discharge capacity of 96.1% after 100 cycles. This improved cycling performance was ascribed to the presence of the BiOF layer on the spinel particles, which prevented the infiltration of HF generated by the decomposition of electrolytic salt, LiPF6, in the electrolyte. This property resulted in a considerable reduction of manganese dissolution of the BiOF-coated spinel Li[Li0.1Al0.05Mn1.85]O-4. Transmission electron microscopy of extensively cycled particles confirmed that the particle surface of the BiOF-coated Li[Li0.1Al0.05Mn1.85]O-4 remained almost completely undamaged, whereas pristine spinel particles were severely deteriorated. In the present paper, we have tried to understand the role of the BiOF coating layer and why such coatings resulted in better battery performances, using BiOF-coated Li[Li0.1Al0.05Mn1.85]O-4. The BiOF coating layer on the surface of Li[Li0.1Al0.05Mn1.85]O-4 particles can be defined as follows; the oxyfluoride layer provides a strong protecting layer against HF attack and scavenges HF, thus resulting in reducing HF from the electrolyte. Synergistically, these actions resulted in the significantly improved high temperature cycling performances exhibited by the BiOF-coated Li[Li0.1Al0.05Mn1.85]O-4.
引用
收藏
页码:1995 / 2005
页数:11
相关论文
共 50 条
  • [41] Effect of molybdenum on Li2Mn4O9 for rechargeable lithium ion batteries
    Shaji, K. K.
    Sharmila, S.
    Sushama, George
    Janarthanan, B.
    Chandrasekaran, J.
    IONICS, 2018, 24 (12) : 3725 - 3731
  • [42] Effect of molybdenum on Li2Mn4O9 for rechargeable lithium ion batteries
    K K Shaji
    S Sharmila
    George Sushama
    B Janarthanan
    J Chandrasekaran
    Ionics, 2018, 24 : 3725 - 3731
  • [43] Spherical core-shell Li[(Li0.05Mn0.95)0.8(Ni0.25Mn0.75\)0.2]2O4 spinels as high performance cathodes for lithium batteries
    Myung, Seung-Taek
    Lee, Ki-Soo
    Kim, Dong-Won
    Scrosati, Bruno
    Sun, Yang-Kook
    ENERGY & ENVIRONMENTAL SCIENCE, 2011, 4 (03) : 935 - 939
  • [44] Structural and electrochemical study of Li-Al-Mn-O-F spinel material for lithium secondary batteries
    Kang, YJ
    Kim, JH
    Sun, YK
    JOURNAL OF POWER SOURCES, 2005, 146 (1-2) : 237 - 240
  • [45] The intercalation compound Li(Mn0.9Co0.1)O2 as a positive electrode for rechargeable lithium batteries
    Armstrong, AR
    Gitzendanner, R
    Robertson, AD
    Bruce, PG
    CHEMICAL COMMUNICATIONS, 1998, (17) : 1833 - 1834
  • [47] Synthesis and characterization of spinel Li1.05Cr0.1Mn1.9O4-zFz as cathode materials for lithium-ion batteries
    Chen, Yan-bin
    Hu, Yang
    Lian, Fang
    Liu, Qing-guo
    INTERNATIONAL JOURNAL OF MINERALS METALLURGY AND MATERIALS, 2010, 17 (02) : 220 - 224
  • [48] Electrochemical evaluation of mixed oxide electrode for Li-ion secondary batteries:: Li1.1Mn1.9O4and LiNi0.8Co0.15Al0.05O2
    Myung, ST
    Cho, MH
    Hong, HT
    Kang, TH
    Kim, CS
    JOURNAL OF POWER SOURCES, 2005, 146 (1-2) : 222 - 225
  • [49] Synthesis and characterization of spinel Li1.05Cr0.1Mn1.9O4−zFz as cathode materials for lithium-ion batteries
    Yan-bin Chen
    Yang Hu
    Fang Lian
    Qing-guo Liu
    International Journal of Minerals, Metallurgy, and Materials, 2010, 17 : 220 - 224
  • [50] Synthesis and electrochemical performances of Li4Ti4.95Al0.05O12/C as anode material for lithium-ion batteries
    Wang, Zhenhong
    Chen, Gang
    Xu, Jing
    Lv, Zushun
    Yang, Weiqi
    JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2011, 72 (06) : 773 - 778