Stabilization of all-solid-state Li-S batteries with a polymer-ceramic sandwich electrolyte by atomic layer deposition

被引:96
作者
Liang, Jianneng [1 ]
Sun, Qian [1 ]
Zhao, Yang [1 ]
Sun, Yipeng [1 ]
Wang, Changhong [1 ]
Li, Weihan [1 ]
Li, Minsi [2 ]
Wang, Dawei [1 ]
Li, Xia [1 ]
Liu, Yulong [1 ]
Adair, Keegan [1 ]
Li, Ruying [1 ]
Zhang, Li [3 ]
Yang, Rong [3 ]
Lu, Shigang [3 ]
Huang, Huan [4 ]
Sun, Xueliang [1 ]
机构
[1] Univ Western Ontario, Dept Mech & Mat Engn, London, ON N6A 5B9, Canada
[2] Univ Western Ontario, Dept Chem, London, ON N6A 5B7, Canada
[3] China Automot Battery Res Inst Co Ltd, 5th Floor,43 Min Bldg,North Sanhuan Middle Rd, Beijing 100088, Peoples R China
[4] Glabat Solid State Battery Inc, 700 Collip Circle,Suite 211, London, ON N6G 4X8, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
ION BATTERIES; SULFUR; PERFORMANCE; CATHODE; COATINGS; ANODE;
D O I
10.1039/c8ta09069f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
All-solid-state lithium-sulfur batteries (ASSLSBs) are promising candidates as the power source for future electric vehicles due to their high energy density and superior safety properties. However, one of the major challenges of state-of-the-art ASSLSBs is related to the high interfacial resistance resulting from the instability between the solid-state electrolyte (SSE) and electrodes and/or the side reactions between polysulfides and SSE. Herein, we propose and demonstrate the significant enhancement of the cycling stability of an ASSLSB through atomic layer deposition interfacial engineering on the polymer/oxide ceramic/polymer sandwich-structured SSE. The results show that as few as 10 cycles of ALD Al2O3 on the LATP can endow ASSLSBs with a discharge capacity of 823 mA h g(-1) after 100 charge/discharge cycles, which is almost two times higher than that of the ASSLSB without an ALD coating and that of a Li-S battery with a liquid-based electrolyte. Such improvement is attributed not only to the blocking of the polysulfide shuttling effect via the use of a sandwich SSE but also the significant reduction of the side reaction between the polysulfide and oxide ceramic SSE, which introduces high interfacial resistance and degrades the electrochemical performance. The protection role and mechanism of the ALD layer is also confirmed and revealed by XRD, SEM and XPS measurements.
引用
收藏
页码:23712 / 23719
页数:8
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