A numerical growth model is used to describe the catalyzed growth of carbon nanofibers in the sheath of a low-temperature plasma. Using the model, the effects of variation in the plasma sheath parameters and substrate potential on the carbon nanofiber growth characteristics, such as the growth rate, the effective carbon flux to the catalyst surface, and surface coverages, have been investigated. It is shown that variations in the parameters, which change the sheath width, mainly affect the growth parameters at the low catalyst temperatures, whereas the other parameters such as the gas pressure, ion temperature, and percentages of the hydrocarbon and etching gases, strongly affect the carbon nanofiber growth at higher temperatures. The condi...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...
A numerical growth model is used to describe the catalyzed growth of carbon nanofibers in the sheath...
A theoretical model to describe the plasma-assisted growth of carbon nanofibers (CNFs) is proposed. ...
A theoretical model describing the plasma-assisted growth of carbon nanofibres (CNFs) that accounts ...
A theoretical model describing the plasma-assisted growth of carbon nanofibres (CNFs) that accounts ...
We present a theoretical model describing a plasma-assisted growth of carbon nanofibers (CNFs), whic...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
Carbon nanotubes and nanofibres are typically synthesised under substrate temperatures above 600°C. ...
The results of a hybrid numerical simulation of the growth kinetics of carbon nanowall-like nanostru...
The results of a hybrid numerical simulation of the growth kinetics of carbon nanowall-like nanostru...
Plasma-related effects are shown to lead to large differences in the temperatures of catalyst nanopa...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...
A numerical growth model is used to describe the catalyzed growth of carbon nanofibers in the sheath...
A theoretical model to describe the plasma-assisted growth of carbon nanofibers (CNFs) is proposed. ...
A theoretical model describing the plasma-assisted growth of carbon nanofibres (CNFs) that accounts ...
A theoretical model describing the plasma-assisted growth of carbon nanofibres (CNFs) that accounts ...
We present a theoretical model describing a plasma-assisted growth of carbon nanofibers (CNFs), whic...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
The growth kinetics of single-walled carbon nanotubes (SWCNTs) in a low-temperature, low-pressure re...
Carbon nanotubes and nanofibres are typically synthesised under substrate temperatures above 600°C. ...
The results of a hybrid numerical simulation of the growth kinetics of carbon nanowall-like nanostru...
The results of a hybrid numerical simulation of the growth kinetics of carbon nanowall-like nanostru...
Plasma-related effects are shown to lead to large differences in the temperatures of catalyst nanopa...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
The paper presents results of comparative investigation of carbon nanotubes growth processes in dens...