2023
DOI: 10.1021/acssuschemeng.2c05918
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Tuning Lithiophilic Sites of Ag-Embedded N-Doped Carbon Hollow Spheres via Intentional Blocking Strategy for Ultrastable Li Metal Anode in Rechargeable Batteries

Abstract: Li metal is regarded as an ultimate anode material for highenergy-density lithium-ion batteries; however, addressing dendritic deposition and large volume changes during cycling is essential to commercialize the Li metal anodes. Herein, we propose Ag-embedded N-doped carbon/Li-ion conductor double-shelled hollow spheres (Ag@NC@LAZP) as an electrode material for selective Li deposition. When constructing hollow spheres for Li storage, the use of lithiophilic Ag nanoseeds and N-doped carbon (NC) layers lowers th… Show more

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Cited by 5 publications
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“…To date, various approaches, including designing a 3D host, [19][20][21] introducing lithiophilic sites, [22][23][24][25] and building an artificial interface layer, [26][27][28][29] have been developed to address the previous issues for improving the cycling stability of the LMBs. The design of the 3D lithiophilic host shows great promise as an effective approach to inhibit the formation of Li dendrites and to mitigating the volume fluctuations upon the cycling processes by providing abundant nucleation sites and enough space.…”
Section: Introductionmentioning
confidence: 99%
“…To date, various approaches, including designing a 3D host, [19][20][21] introducing lithiophilic sites, [22][23][24][25] and building an artificial interface layer, [26][27][28][29] have been developed to address the previous issues for improving the cycling stability of the LMBs. The design of the 3D lithiophilic host shows great promise as an effective approach to inhibit the formation of Li dendrites and to mitigating the volume fluctuations upon the cycling processes by providing abundant nucleation sites and enough space.…”
Section: Introductionmentioning
confidence: 99%