AIP Advances · 2017 · 12 citations · 20 references
EngineeringEnergy EfficiencyPhotovoltaic SystemSilicon On InsulatorPhotovoltaicsElectronic PackagingSolar Thermal EnergySolar Energy UtilisationMaterials ScienceMaterials EngineeringElectrical EngineeringSolar Cell EfficiencyEffective LifetimeMicroelectronicsSolar CoolingThermal BudgetCrystalline SiliconApplied PhysicsBuilding-integrated PhotovoltaicsSolar CellsThermal EngineeringResidual C
The effects of residual C on cell properties are investigated from the view point of thermal budget in the n-type bifacial cell processes. Implied Voc obtained from wafers with same Oi concentration depend on the thermal budgets decreases as the Cs concentration increases. The Voc values vary depending on the wafer with different growth cooling rate. To analyze the effect of thermal budget correspond to solar cell fabrication process, CZ wafers with almost the same Oi concentrations are prepared. One of the wafers with relatively high residual Cs concentration shows the longer lifetime than the initial value after the 950 oC annealing step. On the other hand, the lifetime of a wafer with relatively low Cs concentration dramatically decreased by the same process due to the O segregation. These results suggest that it is important to choose appropriate wafer specification, starting with feedstock material, for increasing the solar cell efficiency.
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Ronald A. Sinton, Andrés Cuevas · Applied Physics Letters · 1996 · 1.6K citations
Engineering, Quasi-steady-state Photoconductance, Semiconductor Materials +20
Frank Feldmann, Martin Bivour, Christian Reichel et al. · Solar Energy Materials and Solar Cells · 2013 · 718 citations
Oxygen precipitation in silicon
A. Borghesi, B. Pivac, A. Sassella et al. · Journal of Applied Physics · 1995 · 479 citations
Oxygen precipitation in silicon
W. Patrick, E. E. Hearn, W. A. Westdorp et al. · Journal of Applied Physics · 1979 · 440 citations