Publication | Closed Access
Nanographene-Constructed Carbon Nanofibers Grown on Graphene Sheets by Chemical Vapor Deposition: High-Performance Anode Materials for Lithium Ion Batteries
292
Citations
51
References
2011
Year
EngineeringGraphene SheetsGraphene NanomeshesChemical EngineeringCarbon-based MaterialEnergy Storage DeviceCarbon NanotubesMaterials ScienceCarbon NanofibersEnergy StorageHigh-performance Anode MaterialsNanomaterialsLi-ion Battery MaterialsGraphene PlateletsGraphene FiberGrapheneGraphene NanoribbonBatteriesAnode MaterialsChemical Vapor Deposition
We report on the fabrication of 3D carbonaceous material composed of 1D carbon nanofibers (CNF) grown on 2D graphene sheets (GNS) via a CVD approach in a fluidized bed reactor. Nanographene-constructed carbon nanofibers contain many cavities, open tips, and graphene platelets with edges exposed, providing more extra space for Li(+) storage. More interestingly, nanochannels consisting of graphene platelets arrange almost perpendicularly to the fiber axis, which is favorable for lithium ion diffusion from different orientations. In addition, 3D interconnected architectures facilitate the collection and transport of electrons during the cycling process. As a result, the CNF/GNS hybrid material shows high reversible capacity (667 mAh/g), high-rate performance, and cycling stability, which is superior to those of pure graphene, natural graphite, and carbon nanotubes. The simple CVD approach offers a new pathway for large-scale production of novel hybrid carbon materials for energy storage.
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