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Isolated Single-Atom Ni-N5Catalytic Site in Hollow Porous Carbon Capsules for Efficient Lithium-Sulfur Batteries

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  • Affiliation of Author(s):前沿交叉科学青岛研究院

  • Journal:Nano Letters

  • Key Words:Atoms;Carbon;Catalyst activity;Cathodes;Doping (additives);Electric conductivity;Lithium batteries;Lithium compounds;Nickel compounds;Nitrogen;Nitrogen compounds;Polysulfides;Porous materials;Reaction kinetics;Redox reactions;Sulfur compounds;Hollow nitrogen-doped porous carbon;Lithium/sulfur batteries;Ni-N5active moiety;Nitrogen-doped;Polysulphide redox reaction;Polysulphides;Porous carbons;Single-atom catalyst;Single-atoms;]+ catalyst;Ni?N5 active moiety;hollow nitrogen-doped porous carbon;lithium?sulfur batteries;polysulfides redox reaction;single-atom catalysts

  • Document Code:1478204598740062210

  • Volume:21

  • Issue:22

  • Page Number:9691-9698

  • Number of Words:5

  • Translation or Not:no

  • Date of Publication:2021-11-24

  • Date of Publication:2021-11-24

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