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Nano storage-boxes constructed by the vertical growth of MoS_(2 )on graphene for high-performance Li-S batteries    

文献类型:期刊文献

中文题名:Nano storage-boxes constructed by the vertical growth of MoS_(2 )on graphene for high-performance Li-S batteries

作者:Bowen Cui[1];Xiaomin Cai[1];Wenqiang Wang[1];Petr Saha[2];Gengchao Wang[1]

机构:[1]Shanghai Key Laboratory of Advanced Polymeric Materials,Shanghai Engineering Research Center of Hierarchical Nanomaterials,School of Materials Science and Engineering,East China University of Science and Technology,Shanghai 200237,China;[2]Centre of Polymer Systems,University Institute,Tomas Bata University,T?.T.Bati 5678,Zlin 76001,Zlín,Czech Republic

年份:2022

卷号:31

期号:3

起止页码:91

中文期刊名:Journal of Energy Chemistry

外文期刊名:能源化学(英文版)

收录:CSTPCD;;Scopus;CSCD:【CSCD2021_2022】;

基金:the financial supports of the National Natural Science Foundation of China(21875065,51673064);the International Science&Technology Cooperation Program of China(2016YFE0131200)。

语种:英文

中文关键词:Edge-rich MoS_(2);Nano boxes;Catalytic conversion;Lithium-sulfur batteries

摘要:In order to accelerate the reaction kinetics of lithium-sulfur batteries, the introduction of electro catalysis and proper structural control of the sulfur cathode is urgently needed. MoS_(2) nano sheets was selectively grown vertically (V-MoS_(2)) on the microwave-reduced graphene (rGO) sheets through chemical coupling to construct a self-supporting sulfur cathode with a nano storage-box structure (V-MoS_(2) as the wall and rGO as the bottom). RGO, which has a high conductivity of 37 S cm^(?1), greatly accelerates the transfer of electrons from the active sites on the edge of the layer to the solution. The introduction of carbon tubes can connect the abundant pores in the foam and act as a long-range conductive path. The 2D-orthogonal-2D structure maximally exposes the edge active sites of MoS_(2), and together with graphene form a nano reactor of sulfur, intermediate lithium polysulfides and discharge product Li_(2)S(2). The effective combination of the microstructure confinement of the nano storage-boxes and the efficient synchronous catalytic mechanism of V-MoS_(2) greatly improves the electrochemical performance of the lithium-sulfur batteries. As a result, the assembled lithium-sulfur battery displays a high initial discharge capacity of 1379 mAh g^(?1), good cycle stability (86% capacity retention after 500 cycles at 0.1C) and superior rate performance.

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