We demonstrate wide-range diameter modulation of vertically aligned single-walled carbon nanotubes (SWNTs) using a wet chemistry prepared catalyst. In order to ensure compatibility to electronic applications, the current minimum mean diameter of 2 nm for vertically aligned SWNTs is challenged. The mean diameter is decreased to about 1.4 nm by reducing Co catalyst concentrations to 1/100 or by increasing Mo catalyst concentrations by five times. We also propose a novel spectral analysis method that allows one to distinguish absorbance contributions from the upper, middle, and lower parts of a nanotube array. We use this method to quantitatively characterize the slight diameter change observed along the array height. On the basis of further i...
International audienceThis research treats a particularly challenging undertaking in carbon nanoscie...
Semiconducting single-walled nanotube (s-SWNT) arrays with specific diameters are urgently demanded ...
Vertically-aligned carbon nanotubes possess many advantages for a wide range of multifunctional appl...
We demonstrate wide-range diameter modulation of vertically aligned single-walled carbon nanotubes (...
Here, we report a diameter-controlled synthesis of vertically aligned (VA) single-walled carbon nano...
In the present study, we systematically described the tuning of the diameter of single-walled carbon...
The effect of catalytic thin film thickness on the diameter control of individual carbon nanotubes g...
Precisely controlled reactive chemical vapor synthesis of highly uniform, dense arrays of vertically...
Direct growth of single-walled carbon nanotubes (SWNTs) on flat substrates by chemical vapor deposit...
A precise control of the dimension of carbon nanotubes (CNTs) in their vertical array could enable m...
A new and useful nanotube growth substrate conditioning processes is herein disclosed that allows th...
High-quality single-walled carbon nanotubes (SWNTs) with tunable diameters were synthesized by an im...
Molecular nanoclusters containing Fe and Mo atoms have been used as catalyst precursors for the grow...
Precisely controlled reactive chemical vapor synthesis of highly uniform, dense arrays of vertically...
By controlling the timing and duration of hydrogen exposure in a fixed thermal process, we tuned the...
International audienceThis research treats a particularly challenging undertaking in carbon nanoscie...
Semiconducting single-walled nanotube (s-SWNT) arrays with specific diameters are urgently demanded ...
Vertically-aligned carbon nanotubes possess many advantages for a wide range of multifunctional appl...
We demonstrate wide-range diameter modulation of vertically aligned single-walled carbon nanotubes (...
Here, we report a diameter-controlled synthesis of vertically aligned (VA) single-walled carbon nano...
In the present study, we systematically described the tuning of the diameter of single-walled carbon...
The effect of catalytic thin film thickness on the diameter control of individual carbon nanotubes g...
Precisely controlled reactive chemical vapor synthesis of highly uniform, dense arrays of vertically...
Direct growth of single-walled carbon nanotubes (SWNTs) on flat substrates by chemical vapor deposit...
A precise control of the dimension of carbon nanotubes (CNTs) in their vertical array could enable m...
A new and useful nanotube growth substrate conditioning processes is herein disclosed that allows th...
High-quality single-walled carbon nanotubes (SWNTs) with tunable diameters were synthesized by an im...
Molecular nanoclusters containing Fe and Mo atoms have been used as catalyst precursors for the grow...
Precisely controlled reactive chemical vapor synthesis of highly uniform, dense arrays of vertically...
By controlling the timing and duration of hydrogen exposure in a fixed thermal process, we tuned the...
International audienceThis research treats a particularly challenging undertaking in carbon nanoscie...
Semiconducting single-walled nanotube (s-SWNT) arrays with specific diameters are urgently demanded ...
Vertically-aligned carbon nanotubes possess many advantages for a wide range of multifunctional appl...