Vapor-phase pyrolysis of Fe(CO)(5) in the presence of another carbon source such as CO or Ca He yields iron-filled or hollow nanotubes depending on the relative concentration of the carbon source. Essentially single-walled nanotubes are obtained when the C6H6/Fe(CO)(5) ratio is high. Pyrolysis of metallocenes yields metal-filled nanotubes and hollow nanotubes are obtained when metallocenes are pyrolyzed along with benzene. Metal-decorated nanotubes are also obtained by this method
Abstract. Carbon nanotubes (CNTs) have been synthesized via directly pyrolyzing ferrocene in the aut...
Pyrolysis of hydrocarbons over metal catalysts has proved to be a very efficient and versatile techn...
In the present paper we report the simultaneous synthesis of single-walled carbon nanotubes (SWCNTs)...
Vapor-phase pyrolysis of Fe(CO)(5) in the presence of another carbon source such as CO or Ca He yiel...
Vapor-phase pyrolysis of Fe(CO)5 in the presence of another carbon source such as CO or C6H6 yields ...
Pyrolysis of metallocenes such as ferrocene, cobaltocene and nickelocene, is shown to yield carbon n...
Gas-phase pyrolysis of acetylene along with a metallocene or with a binary mixture of metallocenes i...
Pyrolysis of organometallic precursors such as metallocenes and iron pentacarbonyl as well as of the...
The present work reports a method for preparing nanotubes involving pyrolysis of aerosols generated ...
Multi-walled as well as single-walled carbon nanotubes are conveniently prepared by the pyrolysis of...
Monodispersed nanospheres of carbon are obtained by the pyrolysis of methane or benzene at high temp...
Organometallics supply carbon and metal catalyst needed for carbon nanotube synthesis. It is shown t...
Several vapor phase methods have been developed for the preparation and modification of carbon nanot...
Aligned multi-walled carbon nanotubes (30–130 μm long, 10–200 nm outer diameter) have been prepared ...
Metal-catalyzed carbon nanotubes are highly ordered carbon structures of nanoscale dimensions. They ...
Abstract. Carbon nanotubes (CNTs) have been synthesized via directly pyrolyzing ferrocene in the aut...
Pyrolysis of hydrocarbons over metal catalysts has proved to be a very efficient and versatile techn...
In the present paper we report the simultaneous synthesis of single-walled carbon nanotubes (SWCNTs)...
Vapor-phase pyrolysis of Fe(CO)(5) in the presence of another carbon source such as CO or Ca He yiel...
Vapor-phase pyrolysis of Fe(CO)5 in the presence of another carbon source such as CO or C6H6 yields ...
Pyrolysis of metallocenes such as ferrocene, cobaltocene and nickelocene, is shown to yield carbon n...
Gas-phase pyrolysis of acetylene along with a metallocene or with a binary mixture of metallocenes i...
Pyrolysis of organometallic precursors such as metallocenes and iron pentacarbonyl as well as of the...
The present work reports a method for preparing nanotubes involving pyrolysis of aerosols generated ...
Multi-walled as well as single-walled carbon nanotubes are conveniently prepared by the pyrolysis of...
Monodispersed nanospheres of carbon are obtained by the pyrolysis of methane or benzene at high temp...
Organometallics supply carbon and metal catalyst needed for carbon nanotube synthesis. It is shown t...
Several vapor phase methods have been developed for the preparation and modification of carbon nanot...
Aligned multi-walled carbon nanotubes (30–130 μm long, 10–200 nm outer diameter) have been prepared ...
Metal-catalyzed carbon nanotubes are highly ordered carbon structures of nanoscale dimensions. They ...
Abstract. Carbon nanotubes (CNTs) have been synthesized via directly pyrolyzing ferrocene in the aut...
Pyrolysis of hydrocarbons over metal catalysts has proved to be a very efficient and versatile techn...
In the present paper we report the simultaneous synthesis of single-walled carbon nanotubes (SWCNTs)...