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Structural and Electrochemical Properties of Li2O-V2O5-B2O3-Bi2O3 Glass and Glass-Ceramic Cathodes for Lithium-Ion Batteries
被引:5
|作者:
Chen, Yuan
[1
,2
,3
]
Zhao, Yufei
[1
]
Liu, Feihong
[1
]
Ding, Mengdie
[1
]
Wang, Juan
[1
,2
,3
]
Jiang, Jiuxin
[1
,2
,3
]
Boulet, Pascal
[2
,4
]
Record, Marie-Christine
[2
,5
]
机构:
[1] Hubei Univ Technol, Collaborat Innovat Ctr Green Light Weight Mat & Pr, Sch Mat & Chem Engn, Hubei Prov Key Lab Green Mat Light Ind, Wuhan 430068, Peoples R China
[2] New Mat & Green Mfg Talent Intro & Innovat Demonst, Wuhan 430068, Peoples R China
[3] Hubei Longzhong Lab, Xiangyang 441000, Peoples R China
[4] Aix Marseille Univ, Fac Sci, MADIREL, CNRS, F-13397 Marseille 20, France
[5] Aix Marseille Univ, Fac Sci, CNRS, IM2NP, F-13397 Marseille 20, France
来源:
关键词:
lithium-ion battery;
cathode materials;
vanadate glass;
structural stability;
charge;
discharge performance;
ELECTRICAL-CONDUCTIVITY;
VANADATE GLASS;
FE2O3;
V2O5;
ENVIRONMENTS;
SPECTROSCOPY;
ENHANCEMENT;
CAPACITY;
SODIUM;
OXIDE;
D O I:
10.3390/molecules28010229
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 this study, 20Li(2)O-60V(2)O(5)-(20 - x)B2O3-xBi(2)O(3) (x = 5, 7.5, 10 mol%) glass materials have been prepared by the melt-quenching method, and the structure and morphology of the glass materials have been characterized by XRD, FTIR, Raman, and FE-SEM. The results show that the disordered network of the glass is mainly composed of structural motifs, such as VO4, BO3, BiO3, and BiO6. The electrochemical properties of the glass cathode material have been investigated by the galvanostatic charge-discharge method and cyclic voltammetry, and the results show that with the increases of Bi2O3 molar content, the amount of the VO4 group increases, and the network structure of the glass becomes more stable. To further enhance the electrochemical properties, glass-ceramic materials have been obtained by heat treatment, and the effect of the heat treatment temperature on the structure and electrochemical properties of the glass has been studied. The results show that the initial discharge capacity of the glass-ceramic cathode obtained by heat treatment at 280 degrees C at a current density of 50 mA center dot g(-1) is 333.4 mAh center dot g(-1). In addition, after several cycles of charging and discharging at a high current density of 1000 mA center dot g(-1) and then 10 cycles at 50 mA center dot g(-1), its discharge capacity remains at approximately 300 mAh center dot g(-1) with a capacity retention rate of approximately 90.0%. The results indicate that a proper heat treatment temperature is crucial to improving the electrochemical properties of glass materials. This study provides an approach for the development of new glass cathode materials for lithium-ion batteries.
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页数:14
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