AbstractThe silicon nanorods have been successfully synthesized via a chemical vapor deposition using an one-end sealed tube system at atmospheric pressure. The ice-bath silicon tetrachloride, high-pure H2, high-pure Ar and silicon <111> wafer were used as silicon source, reaction gas, carrier gas, and substrate, respectively. The effect of the reaction temperature, the holding time and the flow rate of the reaction gas and carrier gas on the silicon nanostructures has been investigated. The higher the reaction temperature, the longer the holding time and the higher the flow rate of the reaction gas, the more silicon nanorods grow. The silicon nanorods with the diameter range of 45 ∼ 75 nm are crystalline. They grew along the [111] directio...
Silicon nanowires were synthesized on Si substrates (111) via thermal evaporation using AuPd thin la...
Silicon nanorods have been grown by chemical vapor deposition of silane, using both gold and indium ...
A one-step procedure has been developed to grow beta-SiC nanorods from a solid carbon and silicon so...
The generation of charged nanoparticles in the gas phase has frequently been reported during the syn...
International audienceUsing the Computational Fluid Dynamics code Fluent, a simulation model of an i...
International audienceExperiments conducted in an industrial tubular low pressure chemical vapor dep...
Formations of silicon nanowires using aurum and indium catalyst by plasma-enhanced chemical vapour ...
Silicon nanowires present outstanding properties for electronics, energy, and environmental monitori...
International audienceIn this paper the effect of varying temperature, pressure and chemical precurs...
International audienceThe increase of microelectronic device potentialities essentially derives from...
Isotetrasilane, neopentasilane, and cyclohexasilane were studied as reactants for silicon (Si) nanor...
Silicon nanowires (SiNWs) have successfully been synthesised by carbothermal evaporation method with...
Silicon nanowires were grown on Si (111) substrates by very high frequency plasma enhanced chemical ...
On the basis of the metal-catalyzed chemical vapor deposition method, a general route was developed ...
International audienceA multi-scale model has been developed in order to represent the nucleation an...
Silicon nanowires were synthesized on Si substrates (111) via thermal evaporation using AuPd thin la...
Silicon nanorods have been grown by chemical vapor deposition of silane, using both gold and indium ...
A one-step procedure has been developed to grow beta-SiC nanorods from a solid carbon and silicon so...
The generation of charged nanoparticles in the gas phase has frequently been reported during the syn...
International audienceUsing the Computational Fluid Dynamics code Fluent, a simulation model of an i...
International audienceExperiments conducted in an industrial tubular low pressure chemical vapor dep...
Formations of silicon nanowires using aurum and indium catalyst by plasma-enhanced chemical vapour ...
Silicon nanowires present outstanding properties for electronics, energy, and environmental monitori...
International audienceIn this paper the effect of varying temperature, pressure and chemical precurs...
International audienceThe increase of microelectronic device potentialities essentially derives from...
Isotetrasilane, neopentasilane, and cyclohexasilane were studied as reactants for silicon (Si) nanor...
Silicon nanowires (SiNWs) have successfully been synthesised by carbothermal evaporation method with...
Silicon nanowires were grown on Si (111) substrates by very high frequency plasma enhanced chemical ...
On the basis of the metal-catalyzed chemical vapor deposition method, a general route was developed ...
International audienceA multi-scale model has been developed in order to represent the nucleation an...
Silicon nanowires were synthesized on Si substrates (111) via thermal evaporation using AuPd thin la...
Silicon nanorods have been grown by chemical vapor deposition of silane, using both gold and indium ...
A one-step procedure has been developed to grow beta-SiC nanorods from a solid carbon and silicon so...