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Long-term cycling stability of NiCo2S4 hollow nanowires supported on biomass-derived ultrathin N-doped carbon 3D networks as an anode for lithium-ion batteries. Issue 8 (5th January 2021)
Record Type:
Journal Article
Title:
Long-term cycling stability of NiCo2S4 hollow nanowires supported on biomass-derived ultrathin N-doped carbon 3D networks as an anode for lithium-ion batteries. Issue 8 (5th January 2021)
Main Title:
Long-term cycling stability of NiCo2S4 hollow nanowires supported on biomass-derived ultrathin N-doped carbon 3D networks as an anode for lithium-ion batteries
Abstract : A well-designed composite with NiCo2 S4 hollow nanowires supported on biomass-derived 3D N-doped carbon as a high-capacity and long-lifetime LIB anode. Abstract : A bio-based N-doped carbon 3D network is designed to fabricate a composite anode for LIBs. Benefiting from the highly active substrate and the supported NiCo2 S4 hollow nanowires, the composites exhibit an ultrahigh reversible capacity of 1198 mA h g −1 after 500 cycles, holding great potential for long-term applications.