LiV3O8/Polytriphenylamine Composites with Enhanced Electrochemical Performances as Cathode Materials for Rechargeable Lithium Batteries

被引:17
作者
Li, Wenjuan [1 ,2 ]
Zhu, Limin [1 ,2 ]
Yu, Ziheng [3 ]
Xie, Lingling [1 ,2 ]
Cao, Xiaoyu [1 ,2 ]
机构
[1] Henan Univ Technol, Sch Chem & Chem Engn, Zhengzhou 450001, Peoples R China
[2] Henan Univ Technol, Key Lab High Specif Energy Mat Electrochem Power, Zhengzhou 450001, Peoples R China
[3] China Pharmaceut Univ, Sch Pharm, Nanjing 211196, Jiangsu, Peoples R China
关键词
LiV3O8/polytriphenylamine composites; cathode materials; in situ chemical polymerization method; rechargeable lithium batteries; electrochemical performances; ELECTRODE MATERIALS; POSITIVE ELECTRODE; LIV3O8; NANOSHEETS; DRYING SYNTHESIS; X-RAY; INSERTION; LI1+XV3O8; BEHAVIOR; STATE;
D O I
10.3390/ma10040344
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
LiV3O8/polytriphenylamine composites are synthesized by a chemical oxidative polymerization process and applied as cathode materials for rechargeable lithium batteries (RLB). The structure, morphology, and electrochemical performances of the composites are characterized by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, galvanostatic discharge/charge tests, and electrochemical impedance spectroscopy. It was found that the polytriphenylamine particles were composited with LiV3O8 nanorods which acted as a protective barrier against the side reaction of LiV3O8, as well as a conductive network to reduce the reaction resistance among the LiV3O8 particles. Among the LiV3O8/polytriphenylamine composites, the 17 wt % LVO/PTPAn composite showed the largest d(100) spacing. The electrochemical results showed that the 17 wt % LVO/PTPAn composite maintained a discharge capacity of 271 mAh.g(-1) at a current density of 60 mA.g(-1), as well as maintaining 236 mAh.g(-1) at 240 mA.g(-1) after 50 cycles, while the bare LiV3O8 sample retained only 169 and 148 mAh.g(-1), respectively. Electrochemical impedance spectra (EIS) results implied that the 17 wt % LVO/PTPAn composite demonstrated a decreased charge transfer resistance and increased Li+ ion diffusion ability, therefore manifesting better rate capability and cycling performance compared to the bare LiV3O8 sample.
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页数:13
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