abstract: Layers of intrinsic hydrogenated amorphous silicon and amorphous silicon carbide were prepared on a polished, intrinsic crystalline silicon substrate via plasma-enhanced chemical vapor deposition to simulate heterojunction device relevant stacks of various materials. The minority carrier lifetime, optical band gap and FTIR spectra were observed at incremental stages of thermal annealing. By observing the changes in the lifetimes the sample structure responsible for the most thermally robust surface passivation could be determined. These results were correlated to the optical band gap and the position and relative area of peaks in the FTIR spectra related to to silicon-hydrogen bonds in the layers. It was found that due to an incr...
The most attracting way to fabricate high efficiency solar cells is the amorphous/crystalline silico...
AbstractHeterojunction silicon wafer solar cells using an intrinsic amorphous silicon (a-Si:H) thin-...
Surface passivation is important for high efficiency solar cells. Stacks of hydrogenated amorphous s...
AbstractHydrogenated amorphous silicon (a-Si:H) layers deposited by chemical vapour deposition provi...
The impact of post deposition hydrogen plasma treatment HPT on passivation in amorphous crystallin...
AbstractHigh efficiency solar cells can be fruitfully built using the amorphous/crystalline silicon ...
Intrinsic hydrogenated amorphous silicon (a-Si:H) films can yield in outstanding electronic surface ...
AbstractAmorphous hydrogenated silicon carbide (a-SiCx:H) could be used as a passivating layer in so...
AbstractHydrogen plasma post-deposition treatments of amorphous/crystalline silicon heterojunctions,...
A complete electrical characterization of hydrogenated amorphous silicon layers (a-Si:H) deposited o...
abstract: The dehydrogenation of intrinsic hydrogenated amorphous silicon (a-Si:H) at temperatures a...
Silicon heterojunction solar cells have high open-circuit voltages thanks to excellent passivation o...
Excellent surface passivation of crystalline silicon wafers is known to occur following post-deposit...
Using an inductively coupled plasma, hydrogenated amorphous silicon (a-Si:H) films have been prepare...
Amorphous silicon thin films, fabricated by thermal conversion of neopentasilane, were used to passi...
The most attracting way to fabricate high efficiency solar cells is the amorphous/crystalline silico...
AbstractHeterojunction silicon wafer solar cells using an intrinsic amorphous silicon (a-Si:H) thin-...
Surface passivation is important for high efficiency solar cells. Stacks of hydrogenated amorphous s...
AbstractHydrogenated amorphous silicon (a-Si:H) layers deposited by chemical vapour deposition provi...
The impact of post deposition hydrogen plasma treatment HPT on passivation in amorphous crystallin...
AbstractHigh efficiency solar cells can be fruitfully built using the amorphous/crystalline silicon ...
Intrinsic hydrogenated amorphous silicon (a-Si:H) films can yield in outstanding electronic surface ...
AbstractAmorphous hydrogenated silicon carbide (a-SiCx:H) could be used as a passivating layer in so...
AbstractHydrogen plasma post-deposition treatments of amorphous/crystalline silicon heterojunctions,...
A complete electrical characterization of hydrogenated amorphous silicon layers (a-Si:H) deposited o...
abstract: The dehydrogenation of intrinsic hydrogenated amorphous silicon (a-Si:H) at temperatures a...
Silicon heterojunction solar cells have high open-circuit voltages thanks to excellent passivation o...
Excellent surface passivation of crystalline silicon wafers is known to occur following post-deposit...
Using an inductively coupled plasma, hydrogenated amorphous silicon (a-Si:H) films have been prepare...
Amorphous silicon thin films, fabricated by thermal conversion of neopentasilane, were used to passi...
The most attracting way to fabricate high efficiency solar cells is the amorphous/crystalline silico...
AbstractHeterojunction silicon wafer solar cells using an intrinsic amorphous silicon (a-Si:H) thin-...
Surface passivation is important for high efficiency solar cells. Stacks of hydrogenated amorphous s...