Study on V2O5 Prepared by Hydrothermal Method as Cathode Material for High Performance Lithium-Ion Batteries
Received:July 14, 2021   Revised:August 01, 2021   Accepted:August 02, 2021      Published Online:October 20, 2021
View Full Text  View/Add Comment  Download reader
DOI:doi:10.3969/j.issn.1007-7545.2021.11.014
KeyWord:lithium-ion battery; V2O5 cathode material; nanosheet; electrochemical performance
        
AuthorInstitution
LI Ji-ming 江西理工大学材料冶金化学学部
LIU Jia-ming 江西理工大学材料冶金化学学部
QIN Hui 江西理工大学材料冶金化学学部
Hits: 2718
Download times: 2132
Abstract:
      Lithium-ion batteries have high working voltage and high energy density. At present, mainstream cathode materials such as LiFePO4 cannot meet the need due to its low theoretical capacity. V2O5 has a layered structure and can be effectively embedded with lithium. It is a new type of positive electrode for lithium-ion batteries. However, the poor cycle stability of V2O5 as a cathode material for lithium-ion batteries limits its application. V2O5 nanomaterials with two-dimensional structure were prepared by hydrothermal method and used as cathode materials for lithium-ion batteries, and compared with commercial V2O5. The results of a series of electrochemical tests show that lamellar structure of V2O5 is nanosheets with particle size of 130—280 nm; V2O5 nano sheet has three obvious redox peaks, which shows the process of three phase state transition of lithium ion embedded in V2O5 nano sheet. The cyclic stability test results show that after 50 cycles, reversible capacity of V2O5 nano sheet can still reach 227 mAh/g. Compared with discharge capacity of the second cycle, capacity retention rate is 89%, which proves that V2O5 nano chip has better lithium storage performance.
Close