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  1. What is below the support layer affects carbon nanotube growth: an iron catalyst reservoir yields taller nanotube carpets
  2. Air-stable nanogranular Fe thin films formed by Chemical Vapor Deposition of triiron dodecacarbonyl as catalysts for carbon nanotube growth
  3. Ultra high-yield one-step synthesis of conductive and superhydrophobic three-dimensional mats of carbon nanofibers via full catalysis of unconstrained thin films
  4. Fully reproducible, low-temperature synthesis of high-quality, few-layer graphene on nickel via preheating of gas precursors using atmospheric pressure chemical vapor deposition
  5. Investigating the mechanism of collective bidirectional growth of carbon nanofiber carpets on metallic substrates
  6. Towards promising electrochemical technology for load leveling applications: extending cycle life of lead acid batteries by the use of carbon nano-tubes (CNTs)
  7. Role of Catalyst Oxidation State in the Growth of Vertically Aligned Carbon Nanotubes
  8. Synthesis of tall carpets of vertically aligned carbon nanotubes by in situ generation of water vapor through preheating of added oxygen
  9. ChemInform Abstract: Ultra Fast Elemental Synthesis of High Yield Copper Chevrel Phase with High Electrochemical Performance.
  10. Ultra fast elemental synthesis of high yield copper Chevrel phase with high electrochemical performance
  11. A straightforward and reliable method for the characterization of carbon nanotube dispersions
  12. Precursor gas chemistry determines the crystallinity of carbon nanotubes synthesized at low temperature
  13. Dual formation of carpets of large carbon nanofibers and thin crystalline carbon nanotubes from the same catalyst-underlayer system
  14. The Critical Role of the Underlayer Material and Thickness in Growing Vertically Aligned Carbon Nanotubes and Nanofibers on Metallic Substrates by Chemical Vapor Deposition
  15. Properties, synthesis, and growth mechanisms of carbon nanotubes with special focus on thermal chemical vapor deposition
  16. Low Temperature Synthesis of Vertically Aligned Carbon Nanotubes with Electrical Contact to Metallic Substrates Enabled by Thermal Decomposition of the Carbon Feedstock
  17. Tuning of Vertically-Aligned Carbon Nanotube Diameter and Areal Density through Catalyst Pre-Treatment