We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 × 10(13) cm(-2), the highest yet achieved, by reducing the average diameter of the nanotubes. We use a nanolaminate Fe-Al(2)O(3) catalyst design consisting of three layers of Al(2)O(3), Fe, and Al(2)O(3), in which the lower Al(2)O(3) layer is densified by an oxygen plasma treatment to increase its diffusion barrier properties, to allow a thinner catalyst layer to be used. This high nanotube density is desirable for using carbon nanotubes as interconnects in integrated circuits
Our group recently reproduced the water-assisted growth method, so-called "SuperGrowth", of millimet...
We demonstrate the direct growth of carbon nanotube (CNT) forests on metallic titanium (Ti) coatings...
We demonstrate the growth of high quality single-walled carbon nanotube (SWCNT) forests on commercia...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
We have developed a direct current plasma pretreatment of the Fe catalyst to increase the area densi...
The outstanding mechanical, electrical, thermal, and morphological properties of in-dividual carbon ...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We reported herein the chemical vapor deposition (CVD) growth of vertically aligned carbon nanotubes...
We use oxygen plasma to increase the height of forests from ∼0.2 to >2 mm. The effectiveness of trea...
We have grown carbon nanotubes using Fe and Ni catalyst films deposited by atomic layer deposition. ...
Our group recently reproduced the water-assisted growth method, so-called "SuperGrowth", of millimet...
We demonstrate the direct growth of carbon nanotube (CNT) forests on metallic titanium (Ti) coatings...
We demonstrate the growth of high quality single-walled carbon nanotube (SWCNT) forests on commercia...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We have grown vertically aligned single-walled carbon nanotube forests with an area density of 1.5 ×...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
We have developed a direct current plasma pretreatment of the Fe catalyst to increase the area densi...
The outstanding mechanical, electrical, thermal, and morphological properties of in-dividual carbon ...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We reported herein the chemical vapor deposition (CVD) growth of vertically aligned carbon nanotubes...
We use oxygen plasma to increase the height of forests from ∼0.2 to >2 mm. The effectiveness of trea...
We have grown carbon nanotubes using Fe and Ni catalyst films deposited by atomic layer deposition. ...
Our group recently reproduced the water-assisted growth method, so-called "SuperGrowth", of millimet...
We demonstrate the direct growth of carbon nanotube (CNT) forests on metallic titanium (Ti) coatings...
We demonstrate the growth of high quality single-walled carbon nanotube (SWCNT) forests on commercia...