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Selecting non-metal doped FeS2 as efficient sulfur cathode host for enhanced Li-S redox chemistry.
Wei, Cheng-Dong; Xue, Hong-Tao; Zhang, Zhi-Jun; Zhao, Fen-Ning; Tang, Fu-Ling.
Affiliation
  • Wei CD; School of Materials Science and Engineering, Lanzhou University of Technology, 730050, Lanzhou, China.
  • Xue HT; School of Materials Science and Engineering, Lanzhou University of Technology, 730050, Lanzhou, China.
  • Zhang ZJ; State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals, Lanzhou University of Technology, 730050, Lanzhou, China.
  • Zhao FN; School of Materials Science and Engineering, Lanzhou University of Technology, 730050, Lanzhou, China.
  • Tang FL; School of Materials Science and Engineering, Lanzhou University of Technology, 730050, Lanzhou, China.
Chemphyschem ; 25(5): e202300693, 2024 Mar 01.
Article in En | MEDLINE | ID: mdl-38183359
ABSTRACT
Lithium-sulfur batteries (LSBs) are considered as the development direction of the new generation energy storage system due to their high energy density and low cost. The slow redox kinetics of sulfur and the shuttle effect of lithium polysulfide (LiPS) are considered to be the main obstacles to the practical application of LSBs. Transition-metal sulfide as the cathode host can improve the Li-S redox chemistry. However, there has been no investigation of the application of FeS2 host in Li-S redox chemistry. Applying the first-principles calculations, we investigated the formation energy, band gap, Li+ diffusion, adsorption energy, catalytic performance and Li2 S decomposition barrier of FeAx S2-x (A=N, P, O, Se; x=0, 0.125, 0.25, 0.375) to explore the Li-S redox chemistry and finally select excellent host material. FeA0.25 S1.75 (A=P, Se) has a low Li+ diffusion barrier and superior electronic conductivity. FeO0.25 S1.75 is more favorable for LiPS adsorption, followed by FeP0.25 S1.75 . FeP0.25 S1.75 (001) shows a low overpotential for the Li-S redox chemistry. In summary, FeP0.25 S1.75 has more application potential in LSBs due to its physical and chemical properties, followed by FeSe0.25 S1.75 . This work provides theoretical guidance for the design and selection of the sulfur cathode host materials in LSBs.
Key words

Full text: 1 Database: MEDLINE Type of study: Guideline Language: En Journal: Chemphyschem Journal subject: BIOFISICA / QUIMICA Year: 2024 Type: Article Affiliation country: China

Full text: 1 Database: MEDLINE Type of study: Guideline Language: En Journal: Chemphyschem Journal subject: BIOFISICA / QUIMICA Year: 2024 Type: Article Affiliation country: China