Iron-filled nanotubules were synthesized in a carbon are in the presence of He and Fe(CO)(5) gases. The consumption of the Fe(CO)(5) inside the are chamber was controlled by the pressure of the pentacarbonyliron Fe(CO)(5) gas. Different shapes and filling extents of nanotubules were found depending on the pentacarbonyliron concentration supplied. Based on high-resolution transmission electron microscope images, we propose a growth model of iron-filled carbon nanotubules. The growth proceeds through the deposition and surface diffusion of carbon on the liquidlike metal. The hollow tubules probably grow spontaneously. (C) 1996 American Institute of Physics
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
We report a simple, versatile in situ transmission electron microscopy (TEM) approach for investigat...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Iron-filled nanotubules were synthesized in a carbon are in the presence of He and Fe(CO)(5) gases. ...
The formation mechanism of iron filled carbon nanotubes on oxidized silicon substrates precoated wit...
Carbon forms the basis of a variety of compounds. The allotropic forms of carbon include graphene, f...
ABSTRACT: We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary i...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
International audienceGraphical abstract The evolution of nanoparticles (NPs) in the gas phase durin...
We describe a mathematical model for iron particle formation and growth within a chemical reactor, w...
The catalytic growth of single-wall carbon nanotubes is investigated by high-resolution transmission...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
Multiwalled carbon nanotubes synthesized directly on austenitic stainless steel result in being fill...
Catalytic gas-phase synthesis of carbon nanotubes is gaining importance on industrial as well as lab...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
We report a simple, versatile in situ transmission electron microscopy (TEM) approach for investigat...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
Iron-filled nanotubules were synthesized in a carbon are in the presence of He and Fe(CO)(5) gases. ...
The formation mechanism of iron filled carbon nanotubes on oxidized silicon substrates precoated wit...
Carbon forms the basis of a variety of compounds. The allotropic forms of carbon include graphene, f...
ABSTRACT: We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary i...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
International audienceGraphical abstract The evolution of nanoparticles (NPs) in the gas phase durin...
We describe a mathematical model for iron particle formation and growth within a chemical reactor, w...
The catalytic growth of single-wall carbon nanotubes is investigated by high-resolution transmission...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
Multiwalled carbon nanotubes synthesized directly on austenitic stainless steel result in being fill...
Catalytic gas-phase synthesis of carbon nanotubes is gaining importance on industrial as well as lab...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
We report a simple, versatile in situ transmission electron microscopy (TEM) approach for investigat...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...