One-dimensional metal nanostructures
View Patent ↗Tin powder is heated in a flowing stream of an inert gas, such as argon, containing a small concentration of carbon-containing gas, at a temperature to produce metal vapor. The tin deposits as liquid on a substrate, and reacts with the carbon-containing gas to form carbon nanotubes in the liquid tin. Upon cooling and solidification, a composite of tin nanowires bearing coatings of carbon nanotubes is formed.
1. A one-dimensional tin-carbon composite nanostructure comprising:
a single tin nanowire consisting of a single crystal of elemental tin and partially contained in one or two chemically-deposited carbon nanotubes, each nanotube having an outer diameter of between 100 nm and 200 nm, the tin nanowire having a middle section with two end sections, each end section of the tin nanowire comprising a tip, wherein at least a portion of one end section is contained in a chemically-deposited carbon nanotube, but the middle section of the tin nanowire is not contained in a carbon nanotube.
2. A one-dimensional tin-carbon composite nanostructure as defined in claim 1 , wherein said chemically-deposited carbon nanotube is hollow and said tin nanowire has a substantially uniform diameter.
3. A one-dimensional tin-carbon composite nanostructure as defined in claim 1 , wherein said chemically-deposited carbon nanotube consists essentially of graphitic carbon layers.
4. A one-dimensional tin-carbon composite nanostructure as defined in claim 1 , wherein said chemically-deposited carbon nanotube has a length of between 5 μm and 20 μm and an outer diameter of between 100 nm and 200 nm.
5. A one-dimensional tin-carbon composite nanostructure as defined in claim 1 , wherein at least a portion of each end section of the tin nanowire is contained in a chemically-deposited carbon nanotube, but the middle section of the tin nanowire is not contained in a carbon nanotube.