University of Wollongong
Browse

Mesoporous hexagonal Co3O4 for high performance lithium ion batteries

Download (3.43 MB)
journal contribution
posted on 2024-11-15, 19:24 authored by Dawei Su, Xiuqiang Xie, Paul Munroe, Shi DouShi Dou, Guoxiu Wang
Mesoporous Co3O4 nanoplates were successfully prepared by the conversion of hexagonal beta-Co(OH)(2) nanoplates. TEM, HRTEM and N-2 sorption analysis confirmed the facet crystal structure and inner mesoporous architecture. When applied as anode materials for lithium storage in lithium ion batteries, mesoporous Co3O4 nanocrystals delivered a high specific capacity. At 10 degrees C current rate, as-prepared mesoporous Co3O4 nanoplates delivered a specific capacity of 1203 mAh/g at first cycle and after 200 cycles it can still maintain a satisfied value (330 mAh/g). Fromex-situ TEM, SAED and FESEM observation, it was found that mesoporous Co3O4 nanoplates were reduced to Li2O and Co during the discharge process and re-oxidised without losing the mesoporous structure during charge process. Even after 100 cycles, mesoporous Co3O4 crystals still preserved their pristine hexagonal shape and mesoporous nanostructure.

History

Citation

Su, D., Xie, X., Munroe, P., Dou, S. & Wang, G. (2014). Mesoporous hexagonal Co3O4 for high performance lithium ion batteries. Scientific Reports, 4 6519-1-6519-8.

Journal title

Scientific Reports

Volume

4

Language

English

RIS ID

95400

Usage metrics

    Categories

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC