Journal of the American Ceramic Society · 2014 · 41 citations · 25 references
EngineeringMechanical EngineeringPolymer‐derived SicFree Carbon PhaseCeramic Matrix CompositeDifferent TemperaturesCarbon-based MaterialPyrolysis TemperaturePyrolytic CarbonMaterials ScienceHeat TransferStructural CeramicElectronic MaterialsApplied PhysicsConductivity ChangeAmorphous SolidThermal EngineeringCarbideThermal Properties
We studied the electric conductivity and structure of polymer‐derived carbon‐rich amorphous SiC pyrolyzed at different temperatures. The conductivity of the material increased drastically with pyrolysis temperature followed an Arrhenius relationship with the activation energy of ~3.4 eV. Raman and X‐ray photoelectron spectroscopy analysis revealed that the order of free carbon phase increased with pyrolysis temperature, accompanied by sp 3 → sp 2 transition. The activation energy for such a structure change was 3.1–3.8 eV, which is close to that for the conductivity change. We thus believe that the increase in the conductivity was mainly due to the increase in conductivity of the free carbon phase.
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F. Tuinstra, Jack L. Koenig · The Journal of Chemical Physics · 1970 · 10.4K citations
Materials Science, Single Crystals, Graphene Quantum Dot +13
High resolution XPS characterization of chemical functionalised MWCNTs and SWCNTs
T.I.T. Okpalugo, Pagona Papakonstantinou, H. Murphy et al. · Carbon · 2004 · 1.5K citations