Progress in Photovoltaics Research and Applications · 2002 · 17 citations · 5 references
EngineeringSemiconductor MaterialsPhotovoltaic DevicesThin Film Process TechnologyPhotovoltaic SystemPhotovoltaicsSurface TechnologySin XSolar Cell StructuresThin Film ProcessingMaterials ScienceElectrical EngineeringThin-film FabricationSemiconductor Device FabricationSilicon NitrideApplied PhysicsBuilding-integrated PhotovoltaicsThin FilmsSolar CellsMulticrystalline SiliconChemical Vapor DepositionSolar Cell Materials
Abstract A solar cell process designed to utilise low‐temperature plasma‐enhanced chemical vapour deposited (PECVD) silicon nitride (SiN x ) films as front and rear surface passivation was applied to fabricate multicrystalline silicon (mc‐Si) solar cells. Despite the simple photolithography‐free processing sequence, an independently confirmed efficiency of 18.1% (cell area 2 × 2 cm 2 ) was achieved. This excellent efficiency can be predominantly attributed to the superior quality of the rear surface passivation scheme consisting of an SiN x film in combination with a local aluminium back‐surface field (LBSF). Thus, it is demonstrated that low‐temperature PECVD SiN x films are well suited to achieve excellent rear surface passivation on mc‐Si. Copyright © 2002 John Wiley & Sons, Ltd.
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Record high 18.6% efficient solar cell on HEM multicrystalline material
A. Rohatgi, S. Kamra, P. Doshi et al. · 1996 · 39 citations
Materials Science, Electrical Engineering, Solar Cell Efficiency +15