Ag nanoparticles and Fe-coated Si micrograins were separately deposited onto Si(1 0 0) surfaces and then exposed to an Ar + CH4 microplasma at atmospheric pressure. For the Ag nanoparticles, self-organized carbon nanowires, up to 400 nm in length were produced, whereas for the Fe-coated Si micrograins carbon connections with the length up to 100 μm were synthesized on the plasma-exposed surface area of about 0.5 mm2. The experiment has revealed that long carbon connections and short nanowires demonstrate quite similar behavior and structure. While most connections/nanowires tended to link the nearest particles, some wires were found to 'dissolve' into the substrate without terminating at the second particle. Both connections and nanowires a...
The growth of carbon nanocone arrays on metal catalyst particles by deposition from a low-temperatur...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Ag nanoparticles and Fe-coated Si micrograins were separately deposited onto Si(1 0 0) surfaces and ...
The formation of long self-organized carbon connections (where the length is much greater than the d...
The kinetics of the nucleation and growth of carbon nanotube and nanocone arrays on Ni catalyst nano...
The possibility of effective control of morphology and electrical properties of self-organized graph...
International audienceThis study demonstrates a fast one-step synthesis method for nanostructured ca...
This work describes the growth of silicon⁻silicon carbide nanoparticles (Si⁻SiC) and the...
Controlled self-organized growth of vertically aligned carbon nanocone arrays in a radio frequency i...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The growth of carbon nanocone arrays on metal catalyst particles by deposition from a low-temperatur...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Ag nanoparticles and Fe-coated Si micrograins were separately deposited onto Si(1 0 0) surfaces and ...
The formation of long self-organized carbon connections (where the length is much greater than the d...
The kinetics of the nucleation and growth of carbon nanotube and nanocone arrays on Ni catalyst nano...
The possibility of effective control of morphology and electrical properties of self-organized graph...
International audienceThis study demonstrates a fast one-step synthesis method for nanostructured ca...
This work describes the growth of silicon⁻silicon carbide nanoparticles (Si⁻SiC) and the...
Controlled self-organized growth of vertically aligned carbon nanocone arrays in a radio frequency i...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The growth of carbon nanocone arrays on metal catalyst particles by deposition from a low-temperatur...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...