"Lasagna"-Structured SnS-TaS 2 Misfit Layered Sulfide for Capacitive and Robust Sodium-Ion Storage

Stannous sulfide (SnS), a conversion-alloying type anode for sodium-ion batteries, is strong Na storage activity, a low voltage platform, and high theoretical capacity. However, grain pulverization induced by intolerable volume change and phase aggregation causes quick capacity degradation and unsat...

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Veröffentlicht in:Small (Weinheim an der Bergstrasse, Germany) Germany), 2024-11, Vol.20 (44), p.e2404127
Hauptverfasser: Pan, Youtan, Chen, Wen, Zheng, Chong, Lv, Zhuoran, Zhong, Mengjuan, Hu, Keyan, Huang, Fuqiang, Dong, Wujie
Format: Artikel
Sprache:eng
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Zusammenfassung:Stannous sulfide (SnS), a conversion-alloying type anode for sodium-ion batteries, is strong Na storage activity, a low voltage platform, and high theoretical capacity. However, grain pulverization induced by intolerable volume change and phase aggregation causes quick capacity degradation and unsatisfactory rate capability. Herein, a novel "lasagna" strategy is developed by embedding a SnS layer into the interlayer of an electrochemically robust and electron-active TaS to form a misfit layered (SnS) TaS superlattice. For Na storage, the rationally designed (SnS) TaS anode exhibits high specific capacity, excellent rate capability, and robust cycling stability (729 mAh cm at 15 C after 2000 cycles). Moreover, the as-assembled (SnS) TaS || Na V (PO ) full cells achieve robust and fast Na storage performance with ≈100% capacity retention after 650 cycles at 15 C, which also demonstrates good low-temperature performance at -20 °C with a capacity retention of 75% and 2 C high-rate charge/discharge ability.
ISSN:1613-6810
1613-6829
DOI:10.1002/smll.202404127