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초록
Li/LiV3O8 secondary cells with Li-foil and Li-powder anodes were fabricated, and their electrical properties were compared. Using the powder anode, a cell with an initial discharge capacity of 260 mAh g(-1) that could be operated for over 100 cycles was obtained. The porous Li-powder electrode was safely synthesized by pressing an emulsion droplet onto an SUS mesh. A threefold increase in the electrical conductivity of the LiV3O8 cathode was achieved by the addition of carbon using a vibration pot mill. Using the powder anode resulted in 80% capacity retention at the 100th cycle, while that using the foil electrode was 46%; the 1.0 C-rate/0.1 C-rate capacity ratio also increased from 44% to 60%. A cell employing the LiV3O8-carbon composite cathode showed better electrical performance, a capacity retention of 90% after 50 cycles, and an increase in rate capacity ratio. The crystal structure and morphology of the LiV3O8-C composite were investigated by x-ray diffraction and scanning electron microscopy.
키워드
- 제목
- Electrochemical Behavior of Li/LiV3O8 Secondary Cells
- 저자
- Bak, Hyo Rim; Lee, Jae Ha; Kim, Bok Ki; Yoon, Woo Young
- 발행일
- 2013-03
- 유형
- Article
- 권
- 9
- 호
- 2
- 페이지
- 195 ~ 199