Rational designing and prospecting iron-based compounds as efficient host materials for lithium–sulfur batteries

IF 9.3 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Current Opinion in Green and Sustainable Chemistry Pub Date : 2024-07-09 DOI:10.1016/j.cogsc.2024.100958
Dongjiu Xie , Qingping Wu , Meltem Karaismailoglu Elibol , Lihong Jiang , Yan Lu
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Abstract

Known for its high theoretical capacity and low cost, the commercialization of Li–S batteries is hindered by the notorious shuttle behavior of the intermediate lithium polysulfides in liquid electrolyte and the sluggish kinetics of the liquid-to-solid reaction. Recently, to improve the electrochemical performance, iron-based compounds with well-designed nanostructures have been developed and applied as host material for sulfur because they have strong chemisorption of polar polysulfide molecules and could reduce the nucleation energy of solid Li2S. Here, we have reviewed the latest research progresses (in the last three years) of various iron-based compounds as sulfur host materials and prospected the designing principles of efficient host materials with multiple functionalities to address the issues in sulfur cathode.

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合理设计和探索铁基化合物作为锂硫电池的高效宿主材料
锂-硫电池以其理论容量高、成本低而闻名,但由于中间体多硫化锂在液态电解质中的穿梭行为以及液-固反应的缓慢动力学而阻碍了其商业化。最近,为了改善电化学性能,人们开发并应用了具有精心设计的纳米结构的铁基化合物作为硫的宿主材料,因为它们对极性多硫化物分子具有很强的化学吸附性,可以降低固态 Li2S 的成核能。在此,我们回顾了各种铁基化合物作为硫宿主材料的最新研究进展(近三年),并探讨了具有多种功能的高效宿主材料的设计原理,以解决硫阴极中的问题。
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来源期刊
CiteScore
16.00
自引率
2.20%
发文量
140
审稿时长
103 days
期刊介绍: The Current Opinion journals address the challenge specialists face in keeping up with the expanding information in their fields. In Current Opinion in Green and Sustainable Chemistry, experts present views on recent advances in a clear and readable form. The journal also provides evaluations of the most noteworthy papers, annotated by experts, from the extensive pool of original publications in Green and Sustainable Chemistry.
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