A computational investigation using a unique model and a solution algorithm was conducted, changing only the saturation pressure of one material artificially during nanopowder formation in thermal plasma fabrication, to highlight the effects of the saturation pressure difference between a metal and silicon. The model can not only express any profile of particle size–composition distribution for a metal–silicide nanopowder even with widely ranging sizes from sub-nanometers to a few hundred nanometers, but it can also simulate the entire growth process involving binary homogeneous nucleation, binary heterogeneous co-condensation, and coagulation among nanoparticles with different compositions. Greater differences in saturation pressures cause...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
A computational investigation using a unique model and a solution algorithm was conducted, changing ...
In this paper, quenching effects on silicon nanoparticle growth processes and size distributions at ...
In this paper, quenching effects on silicon nanoparticle growth processes and size distributions at ...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The mixture of titanium tetrachloride and oxygen for the formation of titanium nanoparticles in a pl...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
A computational investigation using a unique model and a solution algorithm was conducted, changing ...
In this paper, quenching effects on silicon nanoparticle growth processes and size distributions at ...
In this paper, quenching effects on silicon nanoparticle growth processes and size distributions at ...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The mixture of titanium tetrachloride and oxygen for the formation of titanium nanoparticles in a pl...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
Various plasma process parameters such as coupled power, process pressure (p), gas flow, and source ...
International audienceSilicon nanopowders are investigated intensively for application in microelect...
The quenching of the photoluminescence of Si nanopowder grown by plasma-enhanced chemical vapor depo...