LiFePO4 modified Li-1.02(Co0.9Fe0.1)(0.98)PO4 cathodes with improved lithium storage properties
- Authors
- Jang, I. C.; Son, C. G.; Yang, S. M. G.; Lee, J. W.; Cho, A. R.; Aravindan, V.; Park, G. J.; Kang, K. S.; Kim, W. S.; Cho, W. I.; Lee, Y. S.
- Issue Date
- 2011-05
- Publisher
- ROYAL SOC CHEMISTRY
- Citation
- JOURNAL OF MATERIALS CHEMISTRY, v.21, no.18, pp.6510 - 6514
- Abstract
- LiCoPO4 and Li-1.02(Co0.9Fe0.1)(0.98)PO4 were prepared by conventional solid state reactions. The surface modification of Li-1.02(Co0.9Fe0.1)(0.98)PO4 particulates by LiFePO4 was successfully carried out by a dry coating procedure. TEM analysis confirmed the presence of a LiFePO4 coating layer of about 20 nm on the surface of the Li-1.02(Co0.9Fe0.1)(0.98)PO4 particles. All three cells delivered high initial discharge capacities of 122, 130 and 128 mA h g(-1) for LiCoPO4, Li-1.02(Co0.9Fe0.1)(0.98)PO4, and LiFePO4 modified Li-1.02(Co0.9Fe0.1)(0.98)PO4, respectively. However, these cells presented quite different cycle retention rates after 20 cycles, 21, 22 and 70% for LiCoPO4, Li-1.02(Co0.9Fe0.1)(0.98)PO4, and LiFePO4 modified Li-1.02(Co0.9Fe0.1)(0.98)PO4, respectively. The improved cycle retention of the LiFePO4-modified Li-1.02(Co0.9Fe0.1)(0.98)PO4 resulted from its reduced reactivity towards the electrolyte and the effective prevention of resistive layer formation on the LiCoPO4 surface during high voltage cycling.
- Keywords
- LI-ION BATTERIES; ELECTROCHEMICAL PERFORMANCE; LICOPO4; CONDUCTIVITY; PHOSPHATES; CARBON; LICOO2; FE; LI-ION BATTERIES; ELECTROCHEMICAL PERFORMANCE; LICOPO4; CONDUCTIVITY; PHOSPHATES; CARBON; LICOO2; FE; Li1.02(Co0.9Fe0.1)0.98PO4 cathodes; LiFePO4 modified; dry coating; Impedance spectroscopy; Isovalent doping
- ISSN
- 0959-9428
- URI
- https://pubs.kist.re.kr/handle/201004/130420
- DOI
- 10.1039/c1jm10574d
- Appears in Collections:
- KIST Article > 2011
- Files in This Item:
There are no files associated with this item.
- Export
- RIS (EndNote)
- XLS (Excel)
- XML
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.