Effect of illumination-induced space charge on photocarrier transport in hydrogenated microcrystalline Si1−xGex p-i-n solar cells
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2779928
Reference11 articles.
1. Hydrogenated microcrystalline silicon germanium: A bottom cell material for amorphous silicon‐based tandem solar cells
2. Microcrystalline Silicon-Germanium Alloys for Absorption Layers in Thin Film Solar Cells
3. Microcrystalline silicon–germanium solar cells for multi-junction structures
4. Influence of alloy composition on carrier transport and solar cell properties of hydrogenated microcrystalline silicon-germanium thin films
5. Compensation of the dangling‐bond space charge in amorphous silicon solar cells by graded low‐level doping in the intrinsic layer
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1. Optimal H2-dilution playing key role in accomplishing significant nanocrystallinity with both Si and Ge moieties in SiGe nanocomposite thin film network;Applied Surface Science;2022-09
2. Narrow band gap high conducting nc-Si1-xGex:H absorber layers for tandem structure nc-Si solar cells;Journal of Alloys and Compounds;2019-10
3. Hydrogenated Microcrystalline Silicon Thin Films;Handbook of Photovoltaic Silicon;2019
4. Crystallization of silicon–germanium by aluminum-induced layer exchange;Japanese Journal of Applied Physics;2018-01-12
5. Formation of crystalline silicon-germanium thin films on silicon substrates by solid phase crystallization;Thin Solid Films;2018-01
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