Hydrogenated microcrystalline silicon thin films can be used to fabricate stable thin film solar cell, which were deposited by very high frequency plasma-enhanced chemical vapor deposition at low temperatures (~200°C). It has been found that the obtained film presented excellent structural and electrical properties, such as high growth rate and good crystallinity. With the decreasing of silane concentration, the optical gap and the dark conductivity increased, whereas the activation energy decreased. A reasonable explanation was presented to elucidate these phenomena. In addition, we fabricated p-i-n structure solar cells using the optimum microcrystalline silicon thin films, and preliminary efficiency of 4.6% was obtained for 1 μm thick mi...
This paper explores the possibility of producing amorphous and nanocrystalline silicon using very hi...
Microcrystalline silicon thin-film solar cells were fabricated at high absorber layer deposition rat...
We present a comprehensive study of microcrystalline silicon (muc-Si:H) solar cells prepared by plas...
The application of microcrystalline silicon (muc-Si:H) in thin-film solar cells is addressed in the ...
VHF-PECVD was used to prepare doped and undoped microcrystalline silicon for applications in thin-fi...
The applicability of the very high frequency (VHF) plasma-enhanced chemical vapor deposition (PECVD)...
Using the high working pressure plasma-enhanced chemical vapor deposition (HWP-PECVD) technique, the...
VHF-PECVD was uséd to prepare doped and undoped microcrystalline silicon forapplications in thin-fil...
Thin-film silicon exists in different phases, ranging from amorphous via microcrystalline to single ...
Abstract. Hydrogenated microcrystalline Silicon (µc-Si:H) produced by the VHF-GD (Very High Frequenc...
Thin-film silicon solar cells with up to 11.2% stable cell efficiency have been developed on ZnO coa...
The replacement of the process gas silane by silicontetrachloride for the deposition of microcrystal...
Stopping the plasma-enhanced chemical vapor deposition (PECVD) once and maintaining the film in a va...
Microcrystalline silicon (mc-Si) films deposited using a Plasma Enhanced Chemical Vapour Deposition ...
High rate growth process, material quality and related solar cell performance of hydrogenated microc...
This paper explores the possibility of producing amorphous and nanocrystalline silicon using very hi...
Microcrystalline silicon thin-film solar cells were fabricated at high absorber layer deposition rat...
We present a comprehensive study of microcrystalline silicon (muc-Si:H) solar cells prepared by plas...
The application of microcrystalline silicon (muc-Si:H) in thin-film solar cells is addressed in the ...
VHF-PECVD was used to prepare doped and undoped microcrystalline silicon for applications in thin-fi...
The applicability of the very high frequency (VHF) plasma-enhanced chemical vapor deposition (PECVD)...
Using the high working pressure plasma-enhanced chemical vapor deposition (HWP-PECVD) technique, the...
VHF-PECVD was uséd to prepare doped and undoped microcrystalline silicon forapplications in thin-fil...
Thin-film silicon exists in different phases, ranging from amorphous via microcrystalline to single ...
Abstract. Hydrogenated microcrystalline Silicon (µc-Si:H) produced by the VHF-GD (Very High Frequenc...
Thin-film silicon solar cells with up to 11.2% stable cell efficiency have been developed on ZnO coa...
The replacement of the process gas silane by silicontetrachloride for the deposition of microcrystal...
Stopping the plasma-enhanced chemical vapor deposition (PECVD) once and maintaining the film in a va...
Microcrystalline silicon (mc-Si) films deposited using a Plasma Enhanced Chemical Vapour Deposition ...
High rate growth process, material quality and related solar cell performance of hydrogenated microc...
This paper explores the possibility of producing amorphous and nanocrystalline silicon using very hi...
Microcrystalline silicon thin-film solar cells were fabricated at high absorber layer deposition rat...
We present a comprehensive study of microcrystalline silicon (muc-Si:H) solar cells prepared by plas...