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Electrochemically Induced High Capacity Displacement Reaction of PEO/MoS<sub>2</sub>/Graphene Nanocomposites with Lithium
516
Citations
27
References
2011
Year
Materials ScienceGraphene NanomeshesMolybdenum DisulfideEngineeringBattery Electrode MaterialsCarbon-based MaterialAdvanced Electrode MaterialGrapheneEnergy StorageEthylene OxideElectrochemical Energy StorageGraphene NanoribbonBatteriesChemistryAnode MaterialsSolid-state BatteryAbstract NanocompositesElectrochemistry
Abstract Nanocomposites comprised of poly(ethylene oxide), molybdenum disulfide, and graphene were prepared by the hydrolysis of lithiated molybdenum disulfide in an aqueous solution of PEO and graphene. Structural analysis by XRD shows the nanocomposites are disordered with an expansion of ∼6 Å in the interlayer spacing. During the first discharge, the nanocomposites electrochemically dissociates irreversibly into Li 2 S and Mo and are able to continously cycle as Li 2 S +Mo/Li x ↔ S + Mo + Li x+2 as shown by XRD of the discharged electrodes at different depth of discharge (DOD), cyclic voltammetry (CV), and high resolution TEM. A significant increase of the reversible capacity is found in as‐prepared MoS 2 /PEO/graphene composite. The results suggest a new electro‐interaction between lithium and molybdenum metal that only occurs in the nanoregime and is enhanced by PEO. The addition of 2 wt% of graphene to the nanocomposites greatly increases the rate capability with rates as high as 10000mA g −1 yielding > 250mAh g −1 and recovering to > 600 mAhr g −1 at 50mA g −1 .
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