Characteristics of Carbon from Chitin-coated LiFePO4 and its Performance for Lithium Ion Battery

被引:4
|
作者
Ratchai, Ekawat [1 ]
Luengchavanon, Montri [2 ]
Techato, Kua-anan [1 ]
Limbuta, Warakorn [3 ]
Chotikhun, Aujchariya [4 ]
Voo, Nyuk Yoong [5 ]
机构
[1] Prince Songkla Univ, Fac Environm Management, Hat Yai 90110, Songkhla, Thailand
[2] Prince Songkla Univ, PSU Elect Vehicle Dev Ctr, Engn Fac, Sustainable Energy Management Program,Wind Energy, Hat Yai 90110, Songkhla, Thailand
[3] Prince Songkla Univ, Fac Sci, Div Hlth & Appl Sci, Thailand Ctr Excellence Innovat Chem,Ctr Excellenc, Hat Yai 90110, Songkhla, Thailand
[4] Prince Songkla Univ, Fac Sci & Ind Technol, Surat Campus, Mueang 84000, Surat Thani, Thailand
[5] Univ Brunei Darussalam, Fac Sci, Appl Phys, Bandar Seri Begawan, Brunei
关键词
Carbon; Chitin; Shrimp shell; LiFePO4; ACTIVATED CARBON; CATHODE MATERIAL; NANOCOMPOSITE; COMPOSITES; SHELLS;
D O I
10.15376/biores.18.3.4399-4412
中图分类号
TB3 [工程材料学]; TS [轻工业、手工业、生活服务业];
学科分类号
0805 ; 080502 ; 0822 ;
摘要
A LiFePO4 battery is the best device for energy storage. Batteries are currently being developed for higher capacity using novel materials. Carbon is one material that can be used to improve the properties of LiFePO4 batteries. The chitin produced from shrimp shell is a viable material that can be transformed into organic carbon. The chitin is revealed to be an element of 36.6 wt% carbon (C). Carbon is formed of small crystallites comprising electrode composite with a uniform carbon coating that can improve the electrochemical activation for LiFePO4/C composites. When the electrochemical reaction was operated at 1.2 V, the flow rate was increased 80%. The average charge-discharge capacities were 100 and-100 mAh/g, respectively, while the average energy density over a period of 20 cycles was 336 Wh/kg (maximum-350 Wh/kg). Therefore, organic carbon can be used to remarkably improve the properties of LiFePO4 batteries with low-cost materials.
引用
收藏
页码:4399 / 4412
页数:14
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