The nucleation and growth of aligned multiwall carbon nanotubes by microwave plasma-enhanced chemical vapor deposition have been studied. The nanotubes nucleate and grow from catalytic cobalt islands on a silicon substrate surface, with both their diameter and length dependent on the size of the cobalt islands. Electron microscopy reveals that the nanotubes grow via a “base growth” mechanism. The nanotubes grow initially at a very rapid and constant rate (∼100 nm/s) that decreases sharply after the catalyst Co particles become fully encapsulated by the nanotubes. We propose a detailed model to explain these experimental observations on nucleation and growth of nanotubes
Aerosol-assisted catalytic chemical vapor deposition (AACCVD) is a powerful one-step process to prod...
Well-aligned carbon nanotubes (CNTs) were grown on iron coated silicon substrates by microwave plasm...
International audienceMulti-walled carbon nanotubes have been grown on 7 nm Ni-coated substrates con...
The nucleation and growth of aligned multiwall carbon nanotubes by microwave plasma-enhanced chemica...
A processing route has been developed to grow bundles of carbon nanotubes on substrates from methane...
The nucleation and growth of carbon nanotubes assisted by microwave plasma on metal surfaces have be...
Uniform films of well-aligned carbon nanotubes have been grown using microwave plasma-enhanced chemi...
This research studies the growth of carbon nanotubes (CNT) from a nickel catalyst to be used on a fi...
Half-centimeter-high mats of vertically aligned single-walled carbon nanotubes were grown at 600 °C ...
[[abstract]]The growth of carbon nanotubes using a microwave-heated chemical vapor deposition system...
International audienceCatalysts play a key role in the growth of carbon nanotubes. The microwave pla...
In this paper the effect of cobalt (Co) catalyst on the growth of carbon nanotubes (CNTs) was studie...
Carbon nanotubes exhibit exceptional properties in many different aspects. However, harnessing those...
Aligned carbon nanotubes have been grown using microwave plasma enhanced chemical vapor deposition (...
Highly aligned carbon nanotubes (NTs) have been directly grown on metallic surfaces and in the chann...
Aerosol-assisted catalytic chemical vapor deposition (AACCVD) is a powerful one-step process to prod...
Well-aligned carbon nanotubes (CNTs) were grown on iron coated silicon substrates by microwave plasm...
International audienceMulti-walled carbon nanotubes have been grown on 7 nm Ni-coated substrates con...
The nucleation and growth of aligned multiwall carbon nanotubes by microwave plasma-enhanced chemica...
A processing route has been developed to grow bundles of carbon nanotubes on substrates from methane...
The nucleation and growth of carbon nanotubes assisted by microwave plasma on metal surfaces have be...
Uniform films of well-aligned carbon nanotubes have been grown using microwave plasma-enhanced chemi...
This research studies the growth of carbon nanotubes (CNT) from a nickel catalyst to be used on a fi...
Half-centimeter-high mats of vertically aligned single-walled carbon nanotubes were grown at 600 °C ...
[[abstract]]The growth of carbon nanotubes using a microwave-heated chemical vapor deposition system...
International audienceCatalysts play a key role in the growth of carbon nanotubes. The microwave pla...
In this paper the effect of cobalt (Co) catalyst on the growth of carbon nanotubes (CNTs) was studie...
Carbon nanotubes exhibit exceptional properties in many different aspects. However, harnessing those...
Aligned carbon nanotubes have been grown using microwave plasma enhanced chemical vapor deposition (...
Highly aligned carbon nanotubes (NTs) have been directly grown on metallic surfaces and in the chann...
Aerosol-assisted catalytic chemical vapor deposition (AACCVD) is a powerful one-step process to prod...
Well-aligned carbon nanotubes (CNTs) were grown on iron coated silicon substrates by microwave plasm...
International audienceMulti-walled carbon nanotubes have been grown on 7 nm Ni-coated substrates con...