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Streamline Sulfur Redox Reactions to Achieve Efficient Room‐Temperature Sodium–Sulfur Batteries

77

Citations

37

References

2022

Year

Abstract

It is vital to dynamically regulate S activity to achieve efficient and stable room-temperature sodium-sulfur (RT/Na-S) batteries. Herein, we report using cobalt sulfide as an electron reservoir to enhance the activity of sulfur cathodes, and simultaneously combining with cobalt single atoms as double-end binding sites for a stable S conversion process. The rationally constructed CoS<sub>2</sub> electron reservoir enables the straight reduction of S to short-chain sodium polysulfides (Na<sub>2</sub> S<sub>4</sub> ) via a streamlined redox path through electron transfer. Meanwhile, cobalt single atoms synergistically work with the electron reservoir to reinforce the streamlined redox path, which immobilize in situ formed long-chain products and catalyze their conversion, thus realizing high S utilization and sustainable cycling stability. The as-developed sulfur cathodes exhibit a superior rate performance of 443 mAh g<sup>-1</sup> at 5 A g<sup>-1</sup> with a high cycling capacity retention of 80 % after 5000 cycles at 5 A g<sup>-1</sup> .

References

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