High-Performance Li-SeSx All-Solid-State Lithium Batteries

被引:0
作者
Li, Xiaona [1 ]
Liang, Jianwen [1 ]
Luo, Jing [1 ]
Wang, Changhong [1 ]
Li, Xia [1 ]
Sun, Qian [1 ]
Li, Ruying [1 ]
Zhang, Li [2 ]
Yang, Rong [2 ]
Lu, Shigang [2 ]
Huang, Huan [3 ]
Sun, Xueliang [1 ]
机构
[1] Univ Western Ontario, Dept Mech & Mat Engn, 1151 Richmond St, London, ON N6A 3K7, Canada
[2] China Automot Battery Res Inst Co Ltd, 5th Floor,43 Min Bldg,North Sanhuan Middle Rd, Beijing 100088, Peoples R China
[3] Glabat Solid State Battery Inc, 700 Collip Circle, London, ON N6G 4X8, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大创新基金会;
关键词
high capacity; selenium sulfide; solid solutions; solid-state batteries; sulfide electrolytes; ARGYRODITE LI6PS5CL; COMPOSITE ELECTRODE; SULFUR-SELENIUM; SE-77; NMR; SPECTROSCOPY; CONDUCTORS; MOLECULES; TRANSPORT; DYNAMICS; SUPERIOR;
D O I
10.1002/adma.201808100
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
All-solid-state Li-S batteries are promising candidates for next-generation energy-storage systems considering their high energy density and high safety. However, their development is hindered by the sluggish electrochemical kinetics and low S utilization due to high interfacial resistance and the electronic insulating nature of S. Herein, Se is introduced into S cathodes by forming SeSx solid solutions to modify the electronic and ionic conductivities and ultimately enhance cathode utilization in all-solid-state lithium batteries (ASSLBs). Theoretical calculations confirm the redistribution of electron densities after introducing Se. The interfacial ionic conductivities of all achieved SeSx-Li3PS4 (x = 3, 2, 1, and 0.33) composites are 10(-6) S cm(-1). Stable and highly reversible SeSx cathodes for sulfide-based ASSLBs can be developed. Surprisingly, the SeS2/Li10GeP2S12-Li3PS4/Li solid-state cells exhibit excellent performance and deliver a high capacity over 1100 mAh g(-1) (98.5% of its theoretical capacity) at 50 mA g(-1) and remained highly stable for 100 cycles. Moreover, high loading cells can achieve high areal capacities up to 12.6 mAh cm(-2). This research deepens the understanding of Se-S solid solution chemistry in ASSLB systems and offers a new strategy to achieve high-performance S-based cathodes for application in ASSLBs.
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页数:10
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