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Carbon-Based Materials

Carbon-Based Materials

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New carbon materials with improved mechanical, electrical, chemical, and optical properties are predicted and considered to be very promising for practical application. Carbon-based materials in the form of films, fabrics, aerogels, or microstructural materials are known for their large surface areas and pore volumes, light weight, and a great variety of structural morphology. Such unique structures can then be employed for a variety of purposes, for example, the production of new electronic devices, energy storage, and the fabrication of new materials. Nowadays, clear understanding of carbon materials via several examples of synthesis/processing methodologies and properties characterization is required. This Special Issue, “Carbon-Based Materials”, addresses the current state regarding the production and investigation of carbon-based materials. It consists of 13 peer-reviewed papers that cover both theoretical and experimental works in a wide a range of subjects on carbon structures.

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Keywords

  • 300 torr
  • active site
  • boron carbide
  • carbon materials
  • carbon nanotube bundle
  • carbon nanowalls
  • chain model
  • Chemical structure
  • chemical vapor deposition
  • chlorination
  • chromium removal
  • coke quality
  • coking behavior
  • Coordination
  • critical charge
  • crumpled graphene
  • CVD mosaic
  • deposition parameters
  • deposition speed
  • deposition temperature
  • Dirac velocity
  • electrical conductivity
  • energy gap
  • equilibrium structure
  • ESR
  • fluorination
  • Grafting
  • Graphene
  • graphene oxide
  • graphite platelet coatings
  • growth mechanism
  • high volatile coking coal
  • Homoepitaxy growth
  • Hydrogen
  • hydrogenation
  • lateral compression
  • LDPE
  • mechanical deformation
  • Mechanical properties
  • metallosupramolecular polymer
  • Molecular Dynamics
  • Ni-graphene composite
  • nitrogen-doped carbon nanotubes
  • nitrogen-doping
  • Ni–graphene composite
  • one-side modification
  • Optical properties
  • organosilanes
  • oxygen reduction reaction
  • oxygen reduction reaction (ORR)
  • Palladium
  • physicochemical properties
  • plane strain conditions
  • plasma synthesis
  • reduced graphene oxide
  • resonant scattering
  • single crystal diamond
  • solid state NMR
  • storage media
  • substrates
  • supercharged impurity
  • surface morphology
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal expansion coefficient
  • Thermal stability
  • thermoresistive properties
  • XRD

Links

DOI: 10.3390/books978-3-0365-3440-4

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