The formation of long self-organized carbon connections (where the length is much greater than the diameter) between Ag nanoparticles on a Si(1 0 0) surface in atmospheric pressure Ar + CH4 microplasmas is demonstrated. A growth scenario explaining the connection nucleation and growth is proposed, and this is supported by numerical simulations which reveal that the electric field pattern around the growing connections affects the surface diffusion of carbon adatoms, the main driving force for the observed self-organization. Results suggest that the microplasma-generated surface charges can be used as effective controls for the self-organized formation of complex carbon-based nano-networks for integrated nanodevices
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...
The possibility of effective control of morphology and electrical properties of self-organized graph...
The formation of long self-organized carbon connections (where the length is much greater than the d...
Ag nanoparticles and Fe-coated Si micrograins were separately deposited onto Si(1 0 0) surfaces and ...
Two different atmospheric pressure microplasma systems are discussed and used for the synthesis and ...
Abstract. Two different atmospheric pressure microplasma systems are discussed and used for the synt...
The growth of sp and sp2 nanostructures in a carbon plasma is simulated by tight-binding molecular d...
International audienceThis study demonstrates a fast one-step synthesis method for nanostructured ca...
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...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The possibility of effective control of morphology and electrical properties of self-organized graph...
The formation of long self-organized carbon connections (where the length is much greater than the d...
Ag nanoparticles and Fe-coated Si micrograins were separately deposited onto Si(1 0 0) surfaces and ...
Two different atmospheric pressure microplasma systems are discussed and used for the synthesis and ...
Abstract. Two different atmospheric pressure microplasma systems are discussed and used for the synt...
The growth of sp and sp2 nanostructures in a carbon plasma is simulated by tight-binding molecular d...
International audienceThis study demonstrates a fast one-step synthesis method for nanostructured ca...
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...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The possibility of effective control of morphology and electrical properties of self-organized graph...