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A nanostructured cathode architecture for low charge overpotential in lithium-oxygen batteries
- Lu, Jun;
- Lei, Yu;
- Lau, Kah Chun;
- Luo, Xiangyi;
- Du, Peng;
- ... Sun, Yang Kook;
- 외 9명
WEB OF SCIENCE
403SCOPUS
403초록
The lithium-oxygen battery, of much interest because of its very high-energy density, presents many challenges, one of which is a high-charge overpotential that results in large inefficiencies. Here we report a cathode architecture based on nanoscale components that results in a dramatic reduction in charge overpotential to similar to 0.2 V. The cathode utilizes atomic layer deposition of palladium nanoparticles on a carbon surface with an alumina coating for passivation of carbon defect sites. The low charge potential is enabled by the combination of palladium nanoparticles attached to the carbon cathode surface, a nanocrystalline form of lithium peroxide with grain boundaries, and the alumina coating preventing electrolyte decomposition on carbon. High-resolution transmission electron microscopy provides evidence for the nanocrystalline form of lithium peroxide. The new cathode material architecture provides the basis for future development of lithium-oxygen cathode materials that can be used to improve the efficiency and to extend cycle life.
키워드
- 제목
- A nanostructured cathode architecture for low charge overpotential in lithium-oxygen batteries
- 저자
- Lu, Jun; Lei, Yu; Lau, Kah Chun; Luo, Xiangyi; Du, Peng; Wen, Jianguo; Assary, Rajeev S.; Das, Ujjal; Miller, Dean J.; Elam, Jeffrey W.; Albishri, Hassan M.; Abd El-Hady, D.; Sun, Yang Kook; Curtiss, Larry A.; Amine, Khalil
- 발행일
- 2013-08
- 유형
- Article
- 권
- 4
- 페이지
- 1 ~ 10