A lithium–oxygen battery with a long cycle life in an air-like atmosphere
Тип публикации: Journal Article
Дата публикации: 2018-03-20
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR: 19.713
CiteScore: 77.7
Impact factor: 56.1
ISSN: 00280836, 14764687
PubMed ID:
29565358
Multidisciplinary
Краткое описание
A lithium–oxygen battery, comprising a lithium carbonate-based protected anode, a molybdenum disulfide cathode and an ionic liquid/dimethyl sulfoxide electrolyte, operates in a simulated air atmosphere with a long cycle life of up to 700 cycles. Lithium–air batteries could have extremely high energy densities and are therefore attractive successors to the lithium-ion batteries that are currently used in electric vehicles. However, the chemistry involved is complex, with multiple potential (and parasitic) side reactions. These are exacerbated by the relatively low proportion of the 'active' component (oxygen) in a real air mixture as opposed to a pure oxygen feed. This can lead to poor performance relative to the theoretical energy density, as well as degradation with time. Now, Larry Curtiss and colleagues combine appropriate cathodes and electrolytes and protect the lithium anode to create a lithium–air battery that can operate for hundreds of cycles in a realistic air-like atmosphere. This suggests that future development of these batteries may not be restricted to using purified air streams. Lithium–air batteries are considered to be a potential alternative to lithium-ion batteries for transportation applications, owing to their high theoretical specific energy1. So far, however, such systems have been largely restricted to pure oxygen environments (lithium–oxygen batteries) and have a limited cycle life owing to side reactions involving the cathode, anode and electrolyte2,3,4,5. In the presence of nitrogen, carbon dioxide and water vapour, these side reactions can become even more complex6,7,8,9,10,11. Moreover, because of the need to store oxygen, the volumetric energy densities of lithium–oxygen systems may be too small for practical applications12. Here we report a system comprising a lithium carbonate-based protected anode, a molybdenum disulfide cathode2 and an ionic liquid/dimethyl sulfoxide electrolyte that operates as a lithium–air battery in a simulated air atmosphere with a long cycle life of up to 700 cycles. We perform computational studies to provide insight into the operation of the system in this environment. This demonstration of a lithium–oxygen battery with a long cycle life in an air-like atmosphere is an important step towards the development of this field beyond lithium-ion technology, with a possibility to obtain much higher specific energy densities than for conventional lithium-ion batteries.
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Asadi M. et al. A lithium–oxygen battery with a long cycle life in an air-like atmosphere // Nature. 2018. Vol. 555. No. 7697. pp. 502-506.
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Asadi M., Sayahpour B., Abbasi P., Ngo A. T., Karis K., Jokisaari J. R., Liu C., Narayanan B., Gerard M., Yasaei P., Hu X., Mukherjee A., Lau K. C., Assary R. S., Khalili Araghi F., Klie R. F., Curtiss L. A., salehi-Khojin A. A lithium–oxygen battery with a long cycle life in an air-like atmosphere // Nature. 2018. Vol. 555. No. 7697. pp. 502-506.
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TY - JOUR
DO - 10.1038/nature25984
UR - https://www.nature.com/articles/nature25984
TI - A lithium–oxygen battery with a long cycle life in an air-like atmosphere
T2 - Nature
AU - Asadi, Mohammad
AU - Sayahpour, Baharak
AU - Abbasi, Pedram
AU - Ngo, Anh T.
AU - Karis, Klas
AU - Jokisaari, Jacob R.
AU - Liu, Cong
AU - Narayanan, Badri
AU - Gerard, Marc
AU - Yasaei, Poya
AU - Hu, Xuan
AU - Mukherjee, Arijita
AU - Lau, Kah Chun
AU - Assary, Rajeev S
AU - Khalili Araghi, Fatemeh
AU - Klie, Robert F
AU - Curtiss, Larry A.
AU - salehi-Khojin, Amin
PY - 2018
DA - 2018/03/20
PB - Springer Nature
SP - 502-506
IS - 7697
VL - 555
PMID - 29565358
SN - 0028-0836
SN - 1476-4687
ER -
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@article{2018_Asadi,
author = {Mohammad Asadi and Baharak Sayahpour and Pedram Abbasi and Anh T. Ngo and Klas Karis and Jacob R. Jokisaari and Cong Liu and Badri Narayanan and Marc Gerard and Poya Yasaei and Xuan Hu and Arijita Mukherjee and Kah Chun Lau and Rajeev S Assary and Fatemeh Khalili Araghi and Robert F Klie and Larry A. Curtiss and Amin salehi-Khojin},
title = {A lithium–oxygen battery with a long cycle life in an air-like atmosphere},
journal = {Nature},
year = {2018},
volume = {555},
publisher = {Springer Nature},
month = {mar},
url = {https://www.nature.com/articles/nature25984},
number = {7697},
pages = {502--506},
doi = {10.1038/nature25984}
}
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Asadi, Mohammad, et al. “A lithium–oxygen battery with a long cycle life in an air-like atmosphere.” Nature, vol. 555, no. 7697, Mar. 2018, pp. 502-506. https://www.nature.com/articles/nature25984.
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