International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous silicon carbide alloy thin films. Amorphous silicon carbide films [a-Si1 − xCx:H (with x < 0.3)] were obtained by plasma enhanced chemical vapor deposition from a mixture of silane and methane diluted in hydrogen. The effect of varying the precursor gas-flow ratio on the film properties was investigated. In particular, a wide optical band gap (2.3 eV) was reached by using a high methane-to-silane flow ratio during the deposition of the a-Si1 − xCx:H layer. The effect of short-time annealing at 700 °C on the composition and properties of the layer was studied by X-ray photoelectron spectroscopy and Fourier transform infrared spect...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Depos...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
AbstractThe thin films of silicon nanocrystals (Si-NC) embedded in silicon carbide (SiC) matrix (Si-...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Depos...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Depos...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
International audienceThe present study demonstrates the growth of silicon nanocrystals on amorphous...
AbstractThe thin films of silicon nanocrystals (Si-NC) embedded in silicon carbide (SiC) matrix (Si-...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Amorphous SiC:H thin films were grown by hot wire chemical vapour deposition from a SiH4/CH4/H2 mixt...
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Depos...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...
Ordered silicon nanocrystals in silicon carbide are produced by Plasma Enhanced Chemical Vapor Depos...
In this work, we study the changes in the optical properties of 300-nm-thick hydrogenated amorphous ...