Boosting Zinc-Ion Intercalation In Hydrated Mos2 Nanosheets Toward Substantially Improved Performance

ENERGY STORAGE MATERIALS(2021)

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摘要
Rechargeable aqueous zinc-ion batteries hold great prospects in grid-level energy storage due to their virtues of good safety, low cost and eco-friendliness. However, the sluggish intercalation kinetics of divalent Zn2+ makes the exploration of a suitable Zn(2+-)host cathode being a formidable challenge. In this work, we unveil the crucial role of crystal water on boosting the Zn2+ intercalation kinetics of layered MoS2 host. The crystal water molecules could function as structural pillars to enlarge the interlayer distance of MoS2 and improve the surface hydrophilicity. Notably, a substantially-enhanced Zn2+ intercalation kinetics is realized by accelerating the charge-transfer transportation and Zn2+ diffusivity. Consequently, the hydrated MoS2 nanosheets enable efficacious Zn2+ insertion/extraction to achieve a high specific capacity of 182 mAh g(-1) at 0.1 A g(-1) and superior rate/cycling performance. The present study will enlighten the water implantation strategy to engineering hydrated cathode materials toward high-performance aqueous batteries.
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关键词
Water implantation, MoS2, Zn2+ intercalation, Zinc-ion batteries, high performance
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