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Effects of the strong oxidant treatment of precursor on the electrochemical properties of LiNi0.8Mn0.1Co0.1O2 for lithium-ion batteries
被引:20
作者:

Huang, Bing
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机构:
Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China

Wang, Meng
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机构:
China Acad Machinery Sci & Technol Grp Co Ltd, Beijing 100044, Peoples R China Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China

Zhao, Zhiyuan
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机构:
Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China

Chen, Lin
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机构:
China Acad Machinery Sci & Technol Grp Co Ltd, Beijing 100044, Peoples R China Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China

Gu, Yijie
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机构:
Weifang Univ, Sch Mech Elect & Vehicle Engn, Weifang 261061, Peoples R China Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China
机构:
[1] Yancheng Teachers Univ, Inst New Energy Chem Storage & Power Sources, Yancheng 224000, Peoples R China
[2] China Acad Machinery Sci & Technol Grp Co Ltd, Beijing 100044, Peoples R China
[3] Weifang Univ, Sch Mech Elect & Vehicle Engn, Weifang 261061, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Nickel-rich cathode material;
KMnO4;
Precursor;
SEI film;
Lithium ions diffusion;
Lithium-ion batteries;
HIGH-PERFORMANCE CATHODE;
HIGH-CAPACITY;
LONG-LIFE;
SURFACE;
LAYER;
VOLTAGE;
SPINEL;
STABILITY;
LINI1/3CO1/3MN1/3O2;
ELECTROLYTE;
D O I:
10.1016/j.jallcom.2019.151800
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:
LiNi0.8Mn0.1Co0.1O2 cathode material with excellent electrochemical properties was successfully prepared by treating a precursor with strong oxidant KMnO4. The effects of KMnO4 on the precursor were analyzed in detail. The results indicated that there was an MnO2 layer of nanoscale thickness that formed on LiNi0.8Mn0.1Co0.1O2, and some Mn4+ ions were introduced into the surface layer. The cathode material prepared by the precursor treated with KMnO4 exhibited an improved capacity retention of 92.5% after 50 cycles at room temperature. Electrochemical impedance spectroscopy analysis confirmed that the increase of the electrochemical impedance for the electrode after 50 cycles was significantly suppressed. Combined with XPS (X-ray photoelectron spectroscopy) tests of the cycled electrodes, it was proven that electrolyte decomposition on the surface of the modified LiNi0.8Mn0.1Co0.1O2 was greatly suppressed, and a thin SEI film was formed. In addition, the lithium-ion diffusion rates before and after 50 cycles were greatly improved, since the MnO2 layer suppressed side reactions between the cathode material and electrolyte and stabilized the structure of LiNi0.8Mn0.1Co0.1O2. (C) 2019 Elsevier B.V. All rights reserved.
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