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Hierarchical Co/CoSe@MoSe2 heterostructures enable efficient polysulfides trapping and conversion for highly stable lithium-sulfur batteries

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dc.title Hierarchical Co/CoSe@MoSe2 heterostructures enable efficient polysulfides trapping and conversion for highly stable lithium-sulfur batteries en
dc.contributor.author Zhang, Yuan
dc.contributor.author Zheng, Guoxiang
dc.contributor.author Demir, Muslum
dc.contributor.author He, Ying
dc.contributor.author Sáha, Petr
dc.contributor.author Jiang, Hao
dc.contributor.author Cheng, Qilin
dc.relation.ispartof Journal of Energy Storage
dc.identifier.issn 2352-152X Scopus Sources, Sherpa/RoMEO, JCR
dc.identifier.issn 2352-1538 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2025
utb.relation.volume 125
dc.type article
dc.language.iso en
dc.publisher Elsevier Ltd
dc.identifier.doi 10.1016/j.est.2025.116966
dc.relation.uri https://www.sciencedirect.com/science/article/pii/S2352152X25016792
dc.relation.uri https://www.sciencedirect.com/science/article/pii/S2352152X25016792/pdfft?md5=52d0db6ba0a52f19a22e90913c8c5ceb&pid=1-s2.0-S2352152X25016792-main.pdf
dc.subject transition metal selenides en
dc.subject heterostructures en
dc.subject polysulfides en
dc.subject lithium-sulfur batteries en
dc.subject electrochemical performance en
dc.description.abstract Lithium-sulfur batteries (LSBs) are now facing great challenges in the sluggish reaction kinetics and the severe shuttle effect of polysulfides. To address these issues, it is of crucial importance to design efficient sulfur cathode with strong adsorption, high catalytic activity and high electrical conductivity. Herein, Co/CoSe@MoSe2 hierarchically heterostructured catalyst is synthesized via a facile pyrolysis and hydrothermal method, in which MoSe₂ nanosheets are coated on Co/CoSe hollow microspheres. As-prepared structure serves as a sulfur host for lithium-sulfur batteries (LSBs). Metal–organic framework (MOF)-derived Co/CoSe metallic junction facilitates rapid catalytic conversion of lithium polysulfide (LiPSs), while two-dimensional MoSe2 nanosheets possessing a strong polarity and high specific surface area effectively trap LiPSs and suppress the shuttle effect. Last but not least, porous carbon networks derived by MOFs accelerate the charge transfer within the catalyst. With these synergistic advantages from their heterogeneous components, the assembled LSBs based on Co/CoSe@MoSe2 sulfur cathode delivers a high discharge capacity of 1313.9 mA h g−1 at 0.1C with a sulfur loading of 1.5 mg cm−2. Even at a high sulfur loading of 3.0 mg cm−2, it still demonstrates a stable cycling with a low capacity decay of 0.042 % per cycle after 200 cycles at 0.2C. This work provides new insights into understanding of heterostructured catalyst systems with balancing adsorption and catalysis for high-performance LSBs. en
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1012482
utb.identifier.scopus 2-s2.0-105004355447
utb.identifier.wok 001490699100008
utb.source j-scopus
dc.date.accessioned 2025-10-16T07:25:44Z
dc.date.available 2025-10-16T07:25:44Z
dc.description.sponsorship National Natural Science Foundation of China, NSFC, (22075082); National Natural Science Foundation of China, NSFC; Science and Technology Commission of Shanghai Municipality, STCSM, (18520744400); Science and Technology Commission of Shanghai Municipality, STCSM
dc.description.sponsorship National Natural Science Foundation of China [22075082]; International Cooperation Project of Shanghai Municipal Science and Technology Committee [18520744400]
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Sáha, Petr
utb.fulltext.sponsorship This work was supported by the National Natural Science Foundation of China (22075082), and International Cooperation Project of Shanghai Municipal Science and Technology Committee (18520744400).
utb.wos.affiliation [Zhang, Yuan; Zheng, Guoxiang; He, Ying; Jiang, Hao; Cheng, Qilin] East China Univ Sci & Technol, Key Lab Ultrafine Mat, Shanghai Engn Res Ctr Hierarch Nanomat, Sch Mat Sci & Engn,Minist Educ, Shanghai 200237, Peoples R China; [Demir, Muslum] Bogazici Univ, Dept Chem Engn, TR-34342 Istanbul, Turkiye; [Saha, Petr] Tomas Bata Univ Zlin, Univ Inst, Ctr Polymer Syst, Trida T Bati 5678, Zlin 76001, Czech Republic
utb.scopus.affiliation Key Laboratory for Ultrafine Materials of Ministry of Education, Shanghai Engineering Research Center of Hierarchical Nanomaterials, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China; Department of Chemical Engineering, Bogazici University, Istanbul, 34342, Turkey; Centre of Polymer Systems, University Institute, Tomas Bata University in Zlín, Trida T. Bati 5678, Zlín, 760 01, Czech Republic
utb.fulltext.projects 22075082
utb.fulltext.projects 18520744400
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