3D interconnected structure-based lithium-sulfur batteries with high energy densities

被引:7
|
作者
Bae, Jong-Hyuk [1 ,2 ]
Lee, So-Ri [1 ]
Choi, Hae-Young [1 ]
Park, Jun-Woo [1 ,3 ]
Kim, Byung Gon [1 ,3 ]
Kim, Doohun [1 ]
Yoon, Seog-Young [2 ]
Lee, You-Jin [1 ]
机构
[1] Korea Electrotechnol Res Inst, Next Generat Battery Res Ctr, 12 Jeongiui gil, Changwon Si 51543, Gyeongsangnam D, South Korea
[2] Pusan Natl Univ, Sch Mat Sci & Engn, 2 Busandaehak ro 63beon gil, Busan 46241, South Korea
[3] Univ Sci & Technol UST, Dept Electrofunct Mat Engn, Daejeon 34113, South Korea
关键词
Lithium-sulfur batteries; Lithium polysulfides; Lithium metal anodes; Sulfur composite cathodes; Three-dimensional interconnected structure; LONG CYCLE LIFE; CATHODE; GROWTH; FOAM; PERFORMANCE; PARTICLES; CAPACITY; ANODE;
D O I
10.1016/j.apsusc.2022.156112
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
Lithium-sulfur (Li-S) batteries have attracted extensive attention as competitive candidates for next-generation high-energy-density batteries because of their excellent theoretical energy density, and the abundance and low cost of sulfur. In this study, a high-energy-density Li-S battery based on a porous metal-carbon composite cathode with a three-dimensional (3D) structure and high sulfur loading, and a metal sponge skeleton-Li composite anode was fabricated. The 3D metal composite electrodes provided a highly robust conductive pathway that improved the electrical/ionic transport. In particular, the 3D sponge-Li anode exhibited stable stripping and plating performance in symmetric cell tests owing to the high electron conductivity provided by the interconnected metal networks. In addition, well-designed full cells with 3D Al-multi-walled carbon nanotube on sulfur cathodes and 3D Ni sponge/Li anodes demonstrated excellent electrochemical performance owing to their high sulfur loading (>8 mg cm-2). The weight of the anode was reduced to less than half of that of a typical Li anode. Further, the cell exhibited an excellent rate capability and improved cyclability. Therefore, our 3D interconnected structure can effectively achieve high sulfur loading and energy densities, thereby addressing the limitations of conventional Li-S cells and achieving notable advances in electrochemical energy storage.
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页数:6
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