Li Bin, Xu Hongfei, Ma Yang, Yang Shubin
Key Laboratory of Aerospace Advanced Materials and Performance of Ministry of Education, School of Materials Science & Engineering, Beihang University, Beijing, 100191, China.
Nanoscale Horiz. 2019 Jan 1;4(1):77-98. doi: 10.1039/c8nh00170g. Epub 2018 Sep 13.
In the past decade, lithium-sulfur batteries have attracted tremendous attention owing to their high theoretical energy densities. The electrochemical performances of lithium-sulfur batteries are strongly dependent on the electrode materials. Among all the electrode material candidates, the application of 2D materials in lithium-sulfur batteries including a sulfur cathode, a lithium anode, a separator and/or an electrolyte has gained great success in enhancing their electrochemical performance by overcoming their intrinsic obstacles. Thus, it is necessary to summarize the relationships between the unique features of 2D materials and the electrochemical performances of lithium-sulfur batteries, guiding the development of next-generation lithium-sulfur batteries. In this review, we focus on recent advances in harnessing the unique properties of 2D materials, including their high surface area, 2D feature, high mechanical strength, plentiful active sites and functional groups to improve the electrochemical properties of sulfur cathodes, lithium anodes, electrolytes and/or separators, respectively. Finally, we propose possible directions and strategies for harnessing various properties of 2D materials to promote the development and applications of lithium-sulfur batteries.
在过去十年中,锂硫电池因其高理论能量密度而备受关注。锂硫电池的电化学性能在很大程度上取决于电极材料。在所有候选电极材料中,二维材料在锂硫电池中的应用,包括硫正极、锂负极、隔膜和/或电解质,通过克服其固有障碍,在提高其电化学性能方面取得了巨大成功。因此,有必要总结二维材料的独特特性与锂硫电池电化学性能之间的关系,以指导下一代锂硫电池的发展。在这篇综述中,我们重点关注利用二维材料独特性质的最新进展,包括其高表面积、二维特性、高机械强度、丰富的活性位点和官能团,分别用于改善硫正极、锂负极、电解质和/或隔膜的电化学性能。最后,我们提出了利用二维材料各种性质以促进锂硫电池发展和应用的可能方向和策略。