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Aqueous and nonaqueous lithium-air batteries enabled by water-stable lithium metal electrodes
The extremely high theoretical energy density of the lithium-oxygen couple makes it very attractive for next-generation battery development. However, there are a number of challenging technical hurdles that must be addressed for Li-Air batteries to become a commercial reality. In this article, we de...
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Published in: | Journal of solid state electrochemistry 2014, Vol.18 (5), p.1443-1456 |
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container_end_page | 1456 |
container_issue | 5 |
container_start_page | 1443 |
container_title | Journal of solid state electrochemistry |
container_volume | 18 |
creator | Visco, Steven J. Nimon, Vitaliy Y. Petrov, Alexei Pridatko, Kirill Goncharenko, Nikolay Nimon, Eugene De Jonghe, Lutgard Volfkovich, Yury M. Bograchev, Daniil A. |
description | The extremely high theoretical energy density of the lithium-oxygen couple makes it very attractive for next-generation battery development. However, there are a number of challenging technical hurdles that must be addressed for Li-Air batteries to become a commercial reality. In this article, we demonstrate how the invention of water-stable, solid electrolyte-protected lithium electrodes solves many of these issues and paves the way for the development of aqueous and nonaqueous Li-Air batteries with unprecedented energy densities. We also show data for fully packaged Li-Air cells that achieve more than 800 Wh/kg. |
doi_str_mv | 10.1007/s10008-014-2427-x |
format | article |
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subjects | Analytical Chemistry Characterization and Evaluation of Materials Chemistry Chemistry and Materials Science Condensed Matter Physics Electrochemistry Energy Storage Original Paper Physical Chemistry |
title | Aqueous and nonaqueous lithium-air batteries enabled by water-stable lithium metal electrodes |
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