Sort by
INIS
iron
100%
reactors
100%
laminar flow
100%
synthesis
100%
carbon nanotubes
100%
ferrocene
100%
growth
50%
carbon monoxide
50%
particles
33%
catalysts
33%
gases
33%
temperature range
33%
heating
16%
morphology
16%
precursor
16%
size
16%
metals
16%
distribution
16%
sampling
16%
walls
16%
aerosols
16%
purity
16%
thermal decomposition
16%
furnaces
16%
disproportionation
16%
Keyphrases
Multi-walled Carbon Nanotubes (MWCNTs)
100%
Ferrocene
100%
Iron Pentacarbonyl
100%
Laminar Flow Reactor
100%
Carbon Nanotube Synthesis
100%
Carbon Dioxide
50%
Nanotubes Formation
50%
Temperature Range
33%
Low Temperature
16%
Gas Phase
16%
Aerosol number Size Distribution
16%
Growth Rate
16%
Morphological Changes
16%
Metal Particles
16%
Gas Phase Process
16%
Thermal Decomposition
16%
Raman Measurements
16%
Gaseous Products
16%
Ambient Pressure
16%
TEM Observation
16%
In Situ Sampling
16%
Carbon Nanotube Growth
16%
Catalyst Precursor
16%
FTIR Measurements
16%
Product Morphology
16%
Very High Purity
16%
Reactor Wall
16%
Catalyst Particle
16%
Excessive Growth
16%
Heating Section
16%
Chemistry
Single Walled Nanotube
100%
Ferrocene
100%
formation
66%
Carbon Monoxide
50%
Pyrolysis
16%
Fourier Transform Infrared Spectroscopy
16%
Disproportionation Reaction
16%
Chemical Engineering
Carbon Nanotube
100%
Disproportionation
16%
Gaseous Products
16%
Gas Phase Process
16%