We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As a partial barrier layer for the diffusion of Co into Mo, we apply very thin Al layer with the nominal thickness of 0.50 nm between Co and Mo. This Al layer plays an important role in the growth of dense CNT forests, partially preventing the Co-Mo interaction. The forests have an average height of ∼300 nm and a mass density of 1.2 g cm(-3) with tubes exhibiting extremely narrow inner spacing. An ohmic behavior is confirmed between the forest and Cu support with the lowest resistance of ∼8 kΩ. The forest shows a high thermal effusivity of 1840 J s(-0.5) m(-2) K(-1), and a thermal conductivity of 4.0 J s(-1) m(-1) K(-1), suggesting that these f...
For better electrical contacts of potential devices, growth of vertically aligned carbon nanotubes (...
Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties...
Carbon nanotube (CNT) forests can be the darkest manmade surfaces in the visible to near-infrared ra...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We grow ultra-high mass density carbon nanotube forests at 450°C on Ti-coated Cu supports using Co-M...
We evaluate the growth kinetics and growth mechanism of ultrahigh mass density carbon nanotube fores...
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 grow vertically aligned carbon nanotube forests on refractory conductive films of TiSiN and achie...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
We demonstrate the growth of high quality single-walled carbon nanotube (SWCNT) forests on commercia...
We present a systematic study of the temperature and pressure dependence of the growth rate of verti...
Beneath the seeming straight-forwardness of growing carbon nanotube (CNT) forests by the injection c...
Carbon nanotubes (CNTs) grow in forests varying in correspondence to many factors. Forests of CNTs h...
For better electrical contacts of potential devices, growth of vertically aligned carbon nanotubes (...
Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties...
Carbon nanotube (CNT) forests can be the darkest manmade surfaces in the visible to near-infrared ra...
We grow dense carbon nanotube forests at 450 °C on Cu support using Co/Al/Mo multilayer catalyst. As...
We grow ultra-high mass density carbon nanotube forests at 450°C on Ti-coated Cu supports using Co-M...
We evaluate the growth kinetics and growth mechanism of ultrahigh mass density carbon nanotube fores...
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 grow vertically aligned carbon nanotube forests on refractory conductive films of TiSiN and achie...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
We demonstrate the growth of high quality single-walled carbon nanotube (SWCNT) forests on commercia...
We present a systematic study of the temperature and pressure dependence of the growth rate of verti...
Beneath the seeming straight-forwardness of growing carbon nanotube (CNT) forests by the injection c...
Carbon nanotubes (CNTs) grow in forests varying in correspondence to many factors. Forests of CNTs h...
For better electrical contacts of potential devices, growth of vertically aligned carbon nanotubes (...
Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties...
Carbon nanotube (CNT) forests can be the darkest manmade surfaces in the visible to near-infrared ra...