The band offsets between crystalline and hydrogenated amorphous silicon (a-Si: H) are key parameters governing the charge transport in modern silicon heterojunction solar cells. They are an important input for macroscopic simulators that are used to further optimize the solar cell. Past experimental studies, using x-ray photoelectron spectroscopy (XPS) and capacitance-voltage measurements, have yielded conflicting results on the band offset. Here, we present a computational study on the band offsets. It is based on atomistic models and density-functional theory (DFT). The amorphous part of the interface is obtained by relatively long DFT first-principles molecular-dynamics runs at an elevated temperature on 30 statistically independent samp...
Hydrogenated amorphous silicon (a-Si:H) has applications in photovoltaics as an absorber m...
International audienceHydrogenated amorphous silicon/crystalline silicon (a-Si:H/c-Si) heterojunctio...
International audienceWe report a quasi-analytical calculation describing the heterojunction between...
The band offsets between crystalline and hydrogenated amorphous silicon (a-Si: H) are key parameters...
The band offsets between crystalline and hydrogenated amorphous silicon (a−Si∶H) are key parameters ...
Contains fulltext : 178177.pdf (preprint version ) (Open Access)6 p
The heterojunction between amorphous silicon (sub)oxides (a-SiOx:H, 0 < x < 2) and crystalline silic...
The heterojunction between amorphous silicon sub oxides a SiOx H, 0 amp; 8201; lt; amp; 8201;x amp...
We present an investigation of the band offsets in amorphous crystalline silicon heterojunctions a ...
AbstractDue to a strong inversion layer at the a-Si:H/c-Si interface, there are errors in the determ...
Amorphous silicon has become the material of choice for many technologies, with major applications i...
We determine the band offsets in amorphous crystalline silicon [a Si H c Si 111 ] heterojunctions us...
Combining orientation dependent electrically detected magnetic resonance and g tensor calculations b...
We explore the near interface structure and band lineup of amorphous crystalline silicon a Si H c...
To investigate the hole transport across amorphous crystalline silicon heterojunctions, solar cells ...
Hydrogenated amorphous silicon (a-Si:H) has applications in photovoltaics as an absorber m...
International audienceHydrogenated amorphous silicon/crystalline silicon (a-Si:H/c-Si) heterojunctio...
International audienceWe report a quasi-analytical calculation describing the heterojunction between...
The band offsets between crystalline and hydrogenated amorphous silicon (a-Si: H) are key parameters...
The band offsets between crystalline and hydrogenated amorphous silicon (a−Si∶H) are key parameters ...
Contains fulltext : 178177.pdf (preprint version ) (Open Access)6 p
The heterojunction between amorphous silicon (sub)oxides (a-SiOx:H, 0 < x < 2) and crystalline silic...
The heterojunction between amorphous silicon sub oxides a SiOx H, 0 amp; 8201; lt; amp; 8201;x amp...
We present an investigation of the band offsets in amorphous crystalline silicon heterojunctions a ...
AbstractDue to a strong inversion layer at the a-Si:H/c-Si interface, there are errors in the determ...
Amorphous silicon has become the material of choice for many technologies, with major applications i...
We determine the band offsets in amorphous crystalline silicon [a Si H c Si 111 ] heterojunctions us...
Combining orientation dependent electrically detected magnetic resonance and g tensor calculations b...
We explore the near interface structure and band lineup of amorphous crystalline silicon a Si H c...
To investigate the hole transport across amorphous crystalline silicon heterojunctions, solar cells ...
Hydrogenated amorphous silicon (a-Si:H) has applications in photovoltaics as an absorber m...
International audienceHydrogenated amorphous silicon/crystalline silicon (a-Si:H/c-Si) heterojunctio...
International audienceWe report a quasi-analytical calculation describing the heterojunction between...