Applied Physics Letters · 2002 · 385 citations · 10 references
EngineeringNanoporous MaterialCarbon NanotechnologyMechanical EngineeringNanostructured PolymerGraphene NanomeshesChemical EngineeringNanoscale ChemistryHollow CoreCarbon-based MaterialNanostructure SynthesisCarbon-based FilmsCarbon NanotubesMaterials ScienceOxidation ConditionsNanotechnologyNanomanufacturingLarge Hollow CoreCarbon MaterialsNanofibersNanofiberNanomaterialsGraphene FiberInterlayer SpacingGrapheneGraphene NanoribbonNanotubes
Straight long carbon nanofibers with a large hollow core obtained by a floating reactant method show a stacking morphology of truncated conical graphene layers, which in turn exhibit a large portion of open edges on the outer surface and also in the inner channels. Through a judicious choice of oxidation conditions, nanofibers with increased active edge sites are obtained without disrupting the fiber’s morphology. A graphitization process induces a morphological change from a tubular type to a reversing saw-toothed type and the formation of loops along the inner channel of the nanofibers, accompanied by a decrease in interlayer spacing.
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Graphitic cones in palladium catalysed carbon nanofibres
Humberto Terrones, T. Hayashi, M. Muñoz-Navia et al. · Chemical Physics Letters · 2001 · 154 citations