Publication | Closed Access
Highly Reversible Zinc-Ion Intercalation into Chevrel Phase Mo<sub>6</sub>S<sub>8</sub> Nanocubes and Applications for Advanced Zinc-Ion Batteries
325
Citations
29
References
2016
Year
EngineeringChemistryAqueous BatteryChemical EngineeringFull CellsAdvanced Zinc-ion BatteriesMaterials ScienceInorganic ChemistryBattery Electrode MaterialsNanotechnologyAdvanced Electrode MaterialEnergy StorageSolid-state BatteryElectrochemistryMetal AnodeMo6s8 AnodesBatteriesAnode MaterialsRemarkable Intercalation Kinetics
This work describes the synthesis of Chevrel phase Mo6S8 nanocubes and its application as the anode material for rechargeable Zn-ion batteries. Mo6S8 can host Zn(2+) ions reversibly in both aqueous and nonaqueous electrolytes with specific capacities around 90 mAh/g, and exhibited remarkable intercalation kinetics and cyclic stability. In addition, we assembled full cells by integrating Mo6S8 anodes with zinc-polyiodide (I(-)/I3(-))-based catholytes, and demonstrated that such full cells were also able to deliver outstanding rate performance and cyclic stability. This first demonstration of a zinc-intercalating anode could inspire the design of advanced Zn-ion batteries.
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