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김영식

Kim, Youngsik
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Development of Prismatic Cells for Rechargeable Seawater Batteries

Author(s)
Kim, YoungjinShin, KwanghoJung, YoungjaeLee, Wang-GeunKim, Youngsik
Issued Date
2022-06
DOI
10.1002/adsu.202100484
URI
https://scholarworks.unist.ac.kr/handle/201301/57750
Fulltext
https://onlinelibrary.wiley.com/doi/10.1002/adsu.202100484
Citation
ADVANCED SUSTAINABLE SYSTEMS, v.6, no.6, pp.2100484
Abstract
Rechargeable seawater batteries (SWBs) using seawater as a catholyte have attracted extensive attention owing to the ocean's high theoretical energy density (3051 Wh L-1, 3145 Wh kg(-1)) and excellent thermal management. However, despite many improvements in materials and cell designs used in SWBs so far, there is a limit on the energy density in practical use, because of the lack of optimization of the cell structure. Herein, this work introduces a novel design by applying a rigid frame with an extended space called "prismatic-type." Consequently, an energy density of 23 Wh (242 Wh L-1) is obtained by increasing the specific area of the unit cell and the capability of the anode active materials in the internal space. In addition, it enables the design of a discrete type that can improve the power density by increasing the surface area of the cathode current collectors. With the increased surface area, a peak power of 1162 mW is achieved for the discrete type compared to 727 mW for the integral type. These results suggest that these newly designed prismatic SWBs could contribute to practical applications in the near future.
Publisher
WILEY-V C H VERLAG GMBH
ISSN
2366-7486
Keyword (Author)
energy densitieslarge-scaleNASICONprismaticrechargeable seawater batteries
Keyword
SODIUM-ION BATTERIES

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