Applied Physics Letters · 2011 · 266 citations · 22 references
Electrical EngineeringEngineeringH LayersH2 Plasma TreatmentsSurface ScienceApplied PhysicsHydrogen Plasma TreatmentSilicon On InsulatorSemiconductor Device FabricationChemical Vapor DepositionSolar CellsPlasma ProcessingPhotovoltaicsExcellent PassivationSemiconductor DeviceMicroelectronics
Silicon heterojunction solar cells have high open-circuit voltages thanks to excellent passivation of the wafer surfaces by thin intrinsic amorphous silicon (a-Si:H) layers deposited by plasma-enhanced chemical vapor deposition. We show a dramatic improvement in passivation when H2 plasma treatments are used during film deposition. Although the bulk of the a-Si:H layers is slightly more disordered after H2 treatment, the hydrogenation of the wafer/film interface is nevertheless improved with as-deposited layers. Employing H2 treatments, 4 cm2 heterojunction solar cells were produced with industry-compatible processes, yielding open-circuit voltages up to 725 mV and aperture area efficiencies up to 21%.
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Ronald A. Sinton, Andrés Cuevas · Applied Physics Letters · 1996 · 1.6K citations
Engineering, Quasi-steady-state Photoconductance, Semiconductor Materials +20
Ideal hydrogen termination of the Si (111) surface
G. S. Higashi, Yves J. Chabal, Gary W. Trucks et al. · Applied Physics Letters · 1990 · 1.4K citations
Materials Science, Surface Characterization, Engineering +14