Japanese Journal of Applied Physics · 2002 · 21 citations · 5 references
EngineeringGlow DischargeMechanical EngineeringAmbient Gas CoolingDiameter ControlHeat PipeCarbon-based MaterialNanoelectronicsNonthermal PlasmaAmbient GasCarbon NanotubesMaterials ScienceElectrical EngineeringNanotechnologyHeat TransferSmall Diameter NanotubeNanomaterialsApplied PhysicsArc DischargeGas Discharge PlasmaThermal Engineering
The cooling effect of an ambient gas on arc discharge for the growth of carbon nanotubes has been investigated in terms of the diameter of the nanotube. A small diameter nanotube with high purity is successfully obtained by cooling of ambient He gas using a water-cooling coil placed around the arc discharge. Furthermore, the width of the diameter distribution becomes narrow under this condition. The effective cooling of the ambient gas induces high plasma temperature, which is evaluated by optical emission spectroscopy.
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