High performance all-solid-state lithium-sulfur battery using a Li2SVGCF nanocomposite

被引:55
|
作者
Eom, Minyong [1 ]
Son, Seunghyeon [2 ]
Park, Chanhwi [2 ]
Noh, Sungwoo [2 ]
Nichols, William T. [2 ]
Shin, Dongwook [1 ,2 ]
机构
[1] Hanyang Univ, Dept Fuel Cells & Hydrogen Technol, 222 Wangsimni Ro, Seoul 133791, South Korea
[2] Hanyang Univ, Dept Mat Sci & Engn, 222 Wangsimni Ro, Seoul 133791, South Korea
关键词
Solid electrolyte; Lithium sulfide; Glass ceramics; Lithium-sulfur battery; All-solid-state battery; CATHODE MATERIALS; GLASS-CERAMICS; ION BATTERIES; LI2S-P2S5; CARBON; LI2S; CHALLENGES;
D O I
10.1016/j.electacta.2017.01.155
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In lithium-sulfur batteries, cyclability is often strongly limited by a high interfacial resistance caused by poor contact between the active material and electron and lithium ion transporting materials. Here, we develop a Li2S-VGCF (Vapor Grown Carbon Fiber) nanocomposite positive electrode for an all-solid-state lithium-sulfur battery that significantly improves cyclability. The Li2S-VGCF nanocomposite is prepared by a solution-based technique with subsequent heat-treatment in order to control the formation of Li2S nanocrystals within the VGCF electron conducting matrix. The small, well -dispersed Li2S nanocrystals offer a large contact area with the solid electrolyte and electron conducting carbon in the composite cathode. To furthet improve conductivity, the composite cathode employs a multi-dimensional approach with long 1-D VGCF fibers supporting long distance electron transport and O-D carbon powder enhancing the contact area with the Li2S active material at lower total carbon content. In the all-solid-state batteries, the highest initial capacity of 469 mhA"g-1 is obtained at conditions of 500 C during heat-treatment. Activation of Li2S is observed during the first 10 cycles. Subsequently, the capacity gradually increased up to 600 mAh.g-1 (g of Li2S). The optimized cell exhibits excellent cyclic performance through 20 cycles and a Coulombic efficiency of -100%. (C)2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:279 / 284
页数:6
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