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Yolk-shell FeS@N-doped carbon nanosphere as superior anode materials for sodium-ion batteries

JOURNAL OF COLLOID AND INTERFACE SCIENCE [2024]
Yongjie Jiang, Anqi Li, Qichang Pan, Shunchao Wang, Man Zhang, Sijiang Hu, Yahao Li, Hongqiang Wang, Qingyu Li, Fenghua Zheng
ABSTRACT

Iron sulfides have shown great potential as anode materials for sodium-ion batteries (SIBs) because of their high sodium storage capacity and low cost. Nevertheless, iron sulfides generally exhibit unsatisfied electrochemical performance induced by sluggish electron/ion transfer and severe pulverization upon the sodiation/desodiation process. Herein, we constructed a yolk-shell FeS@NC nanosphere with an N-doped carbon shell and FeS particle core via a simple hydrothermal method, followed by in-situ polymerization and vulcanization. The FeS particles intimately coupled with N-doped carbon can accelerate the electron transfer, avoid severe volume expansion, and maintain structural stability upon repeated sodiation/desodiation process. Furthermore, the small particle size of FeS can shorten ion-diffusion distance and facilitate ion transportation. Therefore, the FeS@NC nanosphere shows excellent cycling performance and superior rate capability that it can deliver a high capacity of 520.1 mAh g −1 over 800 cycles at 2.0 A g −1 and a remarkable capacity of 625.9 mAh g −1 at 10.0 A g −1 .

MATERIALS

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