International audienceMulti wall carbon nanotubes (MWCNTs) were grown on a stainless steel (SS) sheet by chemical vapor deposition without the addition of external metal catalyst. We found that the key for highly efficient growth includes the nanoscale roughness of the SS surface, as shown by scanning tunneling microscopy, that acts as catalyst/template in the nanotube formation. Raman spectroscopy and electron microscopy were used to check the nature and quality of the synthesized nanotubes. We conclude that stainless steel favors a base-growth mechanism. Transmission electron energy loss spectroscopy performed on single metallic particles found inside the nanotubes clarified the atomic nature of the catalytic particles supplied by the ste...
Single walled carbon nanotubes were synthesized using a variety of transition metal catalyst nanopar...
We report on the synthesis of carbon nanotubes on quasicrystalline alloys. Aligned multiwalled carbo...
Stainless Steel (SS) is the potential substrate in Carbon Nanotube (CNT) synthesis; Iron (Fe) and Ni...
Multi wall carbon nanotubes (MWCNTs) were grown on a stainless steel (SS) sheet by chemical vapor de...
Multi-walled carbon nanotubes were synthesized on 316 stainless steel substrate by chemical vapor de...
Multiwalled carbon nanotubes (MWCNTs) were synthesized on austenitic stainless steel foils (Type 304...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Multi-walled carbon nanotubes were directly grown by chemical vapor deposition on as received or pre...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Carbon nanotubes were synthesized in the laboratory using chemical vapor deposition at different met...
Carbon nanotubes exhibit exceptional properties in many different aspects. However, harnessing those...
Despite enormous strides in the synthesis of carbon nanotubes (CNTs), the mechanism for growth is st...
The evolution of a continuous Fe(NO3)3 catalyst film was observed by in situ annealing in a transmis...
This paper presents our recent success in synthesising carbon nanotubes in powder form. The method a...
In this study, multi-walled carbon nanotubes (MW-CNT) were successfully synthesized using a chemical...
Single walled carbon nanotubes were synthesized using a variety of transition metal catalyst nanopar...
We report on the synthesis of carbon nanotubes on quasicrystalline alloys. Aligned multiwalled carbo...
Stainless Steel (SS) is the potential substrate in Carbon Nanotube (CNT) synthesis; Iron (Fe) and Ni...
Multi wall carbon nanotubes (MWCNTs) were grown on a stainless steel (SS) sheet by chemical vapor de...
Multi-walled carbon nanotubes were synthesized on 316 stainless steel substrate by chemical vapor de...
Multiwalled carbon nanotubes (MWCNTs) were synthesized on austenitic stainless steel foils (Type 304...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Multi-walled carbon nanotubes were directly grown by chemical vapor deposition on as received or pre...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Carbon nanotubes were synthesized in the laboratory using chemical vapor deposition at different met...
Carbon nanotubes exhibit exceptional properties in many different aspects. However, harnessing those...
Despite enormous strides in the synthesis of carbon nanotubes (CNTs), the mechanism for growth is st...
The evolution of a continuous Fe(NO3)3 catalyst film was observed by in situ annealing in a transmis...
This paper presents our recent success in synthesising carbon nanotubes in powder form. The method a...
In this study, multi-walled carbon nanotubes (MW-CNT) were successfully synthesized using a chemical...
Single walled carbon nanotubes were synthesized using a variety of transition metal catalyst nanopar...
We report on the synthesis of carbon nanotubes on quasicrystalline alloys. Aligned multiwalled carbo...
Stainless Steel (SS) is the potential substrate in Carbon Nanotube (CNT) synthesis; Iron (Fe) and Ni...