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Magnetism in Lithium-Oxygen Discharge Product
- Lu, Jun;
- Jung, Hun-Ji;
- Lau, Kah Chun;
- Zhang, Zhengcheng;
- Schlueter, John A.;
- ... Sun, Yang Kook;
- 외 13명
WEB OF SCIENCE
26SCOPUS
29초록
Nonaqueous lithium-oxygen batteries have a much superior theoretical gravimetric energy density compared to conventional lithium-ion batteries, and thus could render long-range electric vehicles a reality. A molecular-level understanding of the reversible formation of lithium peroxide in these batteries, the properties of major/minor discharge products, and the stability of the nonaqueous electrolytes is required to achieve successful lithium-oxygen batteries. We demonstrate that the major discharge product formed in the lithium-oxygen cell, lithium peroxide, exhibits a magnetic moment. These results are based on dc-magnetization measurements and a lithium-oxygen cell containing an ether-based electrolyte. The results are unexpected because bulk lithium peroxide has a significant band gap. Density functional calculations predict that superoxide-type surface oxygen groups with unpaired electrons exist on stoichiometric lithium peroxide crystalline surfaces and on nanoparticle surfaces; these computational results are consistent with the magnetic measurement of the discharged lithium peroxide product as well as EPR measurements on commercial lithium peroxide. The presence of superoxide-type surface oxygen groups with spin can play a role in the reversible formation and decomposition of lithium peroxide as well as the reversible formation and decomposition of electrolyte molecules.
키워드
- 제목
- Magnetism in Lithium-Oxygen Discharge Product
- 저자
- Lu, Jun; Jung, Hun-Ji; Lau, Kah Chun; Zhang, Zhengcheng; Schlueter, John A.; Du, Peng; Assary, Rajeev S.; Greeley, Jeffrey; Ferguson, Glen A.; Wang, Hsien-Hau; Hassoun, Jusef; Iddir, Hakim; Zhou, Jigang; Zuin, Lucia; Hu, Yongfeng; Sun, Yang Kook; Scrosati, Bruno; Curtiss, Larry A.; Amine, Kahlil
- 발행일
- 2013-07
- 유형
- Article
- 저널명
- ChemSusChem
- 권
- 6
- 호
- 7
- 페이지
- 1196 ~ 1202