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Graphene-Based Sulfur Composites for Energy Storage and Conversion in Li-S Batteries

机译:用于Li-S电池中能量存储和转换的石墨烯基硫复合材料

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摘要

There are growing research interests in developing high-performance energy storage systems to meet the demands for large-scale and sustainable energy storage. The lithium-sulfur (Li-S) batteries have drawn numerous attentions due to their exceptionally high energy density compared with other batteries. However, achieving the high capacities with long-term cycle stability and retaining an essentially high sulfur loading remains a tremendous challenge for the designs of Li-S batteries. Graphene is regarded as a very suitable and promising addition to the compositions for Li-S batteries due to its unique two dimensional (2D) structure, high conductivity and superior mechanical flexibility. Besides, the functional groups of graphene surface can be tuned flexibly to immobilize the S/Li2Sx on the graphene surface during the cycling process. In this review, the development of graphene-sulfur composites and their applications in Li-S batteries are discussed. The attempts are also devoted to the synthesis approaches of various graphene-based sulfur composites, the graphene-sulfur interaction and the impacts on the electrochemical performances as well as the major issues of Li-S batteries.
机译:开发高性能的能量存储系统以满足大规模和可持续的能量存储需求的研究兴趣越来越高。锂硫(Li-S)电池由于具有比其他电池特别高的能量密度而备受关注。然而,对于Li-S电池的设计而言,实现具有长期循环稳定性的高容量并保持基本高的硫负载仍然是巨大的挑战。石墨烯因其独特的二维(2D)结构,高导电性和出色的机械柔韧性而被认为是Li-S电池组合物中非常合适且有希望的添加剂。此外,可以在循环过程中灵活地调节石墨烯表面的官能团以将S / Li 2 S x固定在石墨烯表面上。在这篇综述中,讨论了石墨烯-硫复合材料的发展及其在Li-S电池中的应用。这些尝试还致力于各种石墨烯基硫复合材料的合成方法,石墨烯-硫相互作用以及对电化学性能的影响以及锂硫电池的主要问题。

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