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二硫化钼纳米片作为无碳硫宿主用于提高锂硫电池能量密度和循环寿命的结构与电子工程

The Structural and Electronic Engineering of Molybdenum Disulfide Nanosheets as Carbon-Free Sulfur Hosts for Boosting Energy Density and Cycling Life of Lithium-Sulfur Batteries.

作者信息

Shen Wenxiang, Li Pengyue, Zhang Qi, Han Enshan, Gu Guoxian, Wang Ruihu, Li Xiaoju

机构信息

Hebei Key Laboratory of Functional Polymer, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin, 300130, China.

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, 350002, China.

出版信息

Small. 2023 Nov;19(44):e2304122. doi: 10.1002/smll.202304122. Epub 2023 Jul 4.

Abstract

The compact sulfur cathodes with high sulfur content and high sulfur loading are crucial to promise high energy density of lithium-sulfur (Li-S) batteries. However, some daunting problems, such as low sulfur utilization efficiency, serious polysulfides shuttling, and poor rate performance, are usually accompanied during practical deployment. The sulfur hosts play key roles. Herein, the carbon-free sulfur host composed of vanadium-doped molybdenum disulfide (VMS) nanosheets is reported. Benefiting from the basal plane activation of molybdenum disulfide and structural advantage of VMS, high stacking density of sulfur cathode is allowed for high areal and volumetric capacities of the electrodes together with the effective suppression of polysulfides shuttling and the expedited redox kinetics of sulfur species during cycling. The resultant electrode with high sulfur content of 89 wt.% and high sulfur loading of 7.2 mg cm achieves high gravimetric capacity of 900.9 mAh g , the areal capacity of 6.48 mAh cm , and volumetric capacity of 940 mAh cm at 0.5 C. The electrochemical performance can rival with the state-of-the-art those in the reported Li-S batteries. This work provides methodology guidance for the development of the cathode materials to achieve high-energy-density and long-life Li-S batteries.

摘要

具有高硫含量和高硫负载量的紧凑型硫阴极对于实现锂硫(Li-S)电池的高能量密度至关重要。然而,在实际应用过程中,通常会伴随着一些严峻的问题,如低硫利用效率、严重的多硫化物穿梭以及较差的倍率性能。硫主体起着关键作用。在此,报道了一种由钒掺杂二硫化钼(VMS)纳米片组成的无碳硫主体。受益于二硫化钼的基面活化和VMS的结构优势,硫阴极的高堆积密度使得电极具有高面积容量和体积容量,同时有效抑制了多硫化物穿梭,并加快了循环过程中硫物种的氧化还原动力学。所得硫含量为89 wt.%、硫负载量为7.2 mg cm的电极在0.5 C下实现了900.9 mAh g的高比容量、6.48 mAh cm的面积容量和940 mAh cm的体积容量。其电化学性能可与已报道的Li-S电池中的先进水平相媲美。这项工作为开发实现高能量密度和长寿命Li-S电池的阴极材料提供了方法指导。

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