The enhanced red photoluminescence (PL) from Si-rich amorphous silicon carbide (a-SiCx) films was analyzed in this study using nitrogen doping. The increase in nitrogen doping concentration in films results in the significant enhancement of PL intensity by more than three times. The structure and bonding configuration of films were investigated using Raman and Fourier transform infrared absorption spectroscopies, respectively. The PL and analysis results of bonding configurations of films suggested that the enhancement of red PL is mainly caused by the reduction in nonradiative recombination centers as a result of the weak Si–Si bonds substituted by Si–N bonds
A series of hydrogenated amorphous silicon carbide (a-Si1-xCx:H) films were prepared by plasma-enhan...
Hydrogenated amorphous silicon nitride (a-SiNx:H) samples have been prepared by plasma enhanced chem...
Silicon-rich hydrogenated amorphous silicon nitride (a-SiN(x):H) films were grown by plasma enhanced...
The infrared (IR) absorption dependence on visible light illumination has been measured in doped and...
Amorphous SiC films have been deposited by pulsed laser ablation on silicon substrates. Photolumines...
The following study focuses on the photoluminescence (PL) enhancement of chemically synthesized sili...
This paper reports on the preparation and characterization of hydrogenated amorphous silicon carbide...
Luminescent SiCxOy:H films, which are fabricated at different CH4 flow rates using the plasma-enhanc...
The amorphous structured silicon carbide (a-SiC) thin films have been the focus of many studies due ...
Silicon oxycarbide (SiCxOy) is a promising material for achieving strong room-temperature white lumi...
Amorphous SiC thin films with varying phases and compositions have been synthesized using a low freq...
Silicon carbide thin films (Si(x)C(y)) were deposited in a RF (13.56 MHz) magnetron sputtering syste...
Hydrogenated amorphous silicon carbide (a-SiC:H) films were prepared using a home-built plasma-enhan...
The emission at room temperature of visible light (near infrared) from reverse biased (forward biase...
The composition, structure, and optical characteristics of amorphous hydrogenated silicon carbonitri...
A series of hydrogenated amorphous silicon carbide (a-Si1-xCx:H) films were prepared by plasma-enhan...
Hydrogenated amorphous silicon nitride (a-SiNx:H) samples have been prepared by plasma enhanced chem...
Silicon-rich hydrogenated amorphous silicon nitride (a-SiN(x):H) films were grown by plasma enhanced...
The infrared (IR) absorption dependence on visible light illumination has been measured in doped and...
Amorphous SiC films have been deposited by pulsed laser ablation on silicon substrates. Photolumines...
The following study focuses on the photoluminescence (PL) enhancement of chemically synthesized sili...
This paper reports on the preparation and characterization of hydrogenated amorphous silicon carbide...
Luminescent SiCxOy:H films, which are fabricated at different CH4 flow rates using the plasma-enhanc...
The amorphous structured silicon carbide (a-SiC) thin films have been the focus of many studies due ...
Silicon oxycarbide (SiCxOy) is a promising material for achieving strong room-temperature white lumi...
Amorphous SiC thin films with varying phases and compositions have been synthesized using a low freq...
Silicon carbide thin films (Si(x)C(y)) were deposited in a RF (13.56 MHz) magnetron sputtering syste...
Hydrogenated amorphous silicon carbide (a-SiC:H) films were prepared using a home-built plasma-enhan...
The emission at room temperature of visible light (near infrared) from reverse biased (forward biase...
The composition, structure, and optical characteristics of amorphous hydrogenated silicon carbonitri...
A series of hydrogenated amorphous silicon carbide (a-Si1-xCx:H) films were prepared by plasma-enhan...
Hydrogenated amorphous silicon nitride (a-SiNx:H) samples have been prepared by plasma enhanced chem...
Silicon-rich hydrogenated amorphous silicon nitride (a-SiN(x):H) films were grown by plasma enhanced...