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Review Article

Research progress in performance improvement strategies and sulfur conversion mechanisms of Li-S batteries based on Fe series nanomaterials

Ziyang Huang1Zhenghua Wang1Lei Zhou2,3Jun Pu1( )
Key Laboratory of Functional Molecular Solids (Ministry of Education), College of Chemistry and Materials Science, Anhui Provincial Engineering Laboratory for New-Energy Vehicle Battery Energy-Storage Materials, Anhui Normal University, Wuhu 241000, China
School of Energy and Power Engineering, Jiangsu University, Zhenjiang 212013, China
Department of Electrical Engineering, Eindhoven University of Technology, Eindhoven MB 5600, The Netherlands
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Abstract

Lithium-sulfur (Li-S) batteries hold the potential to revolutionize energy storage due to the high theoretical capacity and energy density. However, the commercialization process is seriously hindered by the rapid capacity decay and low utilization of sulfur, caused by the inevitable slow dynamics and the “shuttle effect”. The incorporation of metal-based electrocatalysts into sulfur cathodes shows promise in promoting the conversion of lithium polysulfides (LiPSs), reducing the “shuttle effect”, and enhancing cell kinetics and cycle life. Among these, Fe-based materials, characterized by environmental friendliness, low cost, abundant reserves, and high activity, are extensively used in sulfur cathode modification. This article reviews the advancements of Fe-based materials in enhancing Li-S batteries in recent years. Starting from single/multi-component Fe-based metal compounds and single/bimetallic atoms, the influence of different Fe coordination environments on the conversion mechanism of LiPSs is analyzed. It is hoped that this review and the proposed prospects can further stimulate the development and application of the Fe element in Li-S batteries in the future.

Graphical Abstract

The positive effects of Fe-based materials on sulfur conversion are reviewed from the perspectives of vacancy engineering, metal complex engineering, heterostructure engineering, and single-atom/diatomic materials. The action mechanism of each Fe-based catalyst is described from an atomic perspective.

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Nano Research
Pages 8045-8067

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Cite this article:
Huang Z, Wang Z, Zhou L, et al. Research progress in performance improvement strategies and sulfur conversion mechanisms of Li-S batteries based on Fe series nanomaterials. Nano Research, 2024, 17(9): 8045-8067. https://doi.org/10.1007/s12274-024-6789-9
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Received: 22 April 2024
Revised: 08 May 2024
Accepted: 25 May 2024
Published: 01 July 2024
© Tsinghua University Press 2024