LaLiO2-Based Multi-Functional Interlayer for Enhanced Performance of Li-S Batteries

The "shuttle effect" of polysulfides and sluggish kinetics of sulfur redox are main problems in Lithium-Sulfur batteries. As a result, the Lithium-Sulfur battery systems are still far from commercialization for practical utilities. In this work, we design and prepare a Lanthanum lithium ox...

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Veröffentlicht in:Journal of the Electrochemical Society 2019-01, Vol.166 (2), p.A68-A73
Hauptverfasser: Bizuneh, Girum Girma, Fan, Jingmin, Sun, Cui, Xiangfei, Yuan, Xue, Fei, Deng, Dingrong, Lei, Jie, Lin, Xiaodong, Jia, Yueju, Yang, Jingfang, Yan, Han, Wang, Xueyin, Zheng, Mingsen, Dong, Quanfeng
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Sprache:eng
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Zusammenfassung:The "shuttle effect" of polysulfides and sluggish kinetics of sulfur redox are main problems in Lithium-Sulfur batteries. As a result, the Lithium-Sulfur battery systems are still far from commercialization for practical utilities. In this work, we design and prepare a Lanthanum lithium oxide - based multi-functional interlayer with good electronic and lithium ion conduction as well as efficient for polysulfide blocking. We obtain the multi-functional interlayer combined cathode by coating a composite of Lanthanum lithium oxide on as-prepared sulfur electrode. The modified sulfur cathode with such interlayer configuration gives enhanced electrochemical performance (1458.00 mA h g−1 capacity at initial cycle and 1004.40 mA h g−1 during the first cycle with 1C rate) with outstanding cycling stability up to 250th cycle delivering the corresponding discharge capacity of 872.79 mA h g−1 in Li-S batteries. And, the rate performance has been improved by the facile strategy.
ISSN:1945-7111
DOI:10.1149/2.0271902jes