Light and elevated temperature induced degradation (LeTID) affects significantly the performance of multicrystalline (mc) Si PERC solar cells, and underlying mechanisms of LeTID are still unknown. In this work LeTID and following regeneration of an industrial mc-Si PERC solar cell is compared to differently processed minority charge carrier lifetime samples under illumination (1 sun) and elevated temperature (75°C). LeTID on cell level reveals the same kinetics compared to lifetime samples. Varying the processing sequence has a significant effect on LeTID of lifetime samples. Ungettered samples with fired SiNx:H surface passivation show a very strong LeTID and regeneration effect, with degradation kinetics being similar for all wafer areas ...
Light-induced degradation (LID) of multicrystalline silicon (mc-Si) solar cell performance has been ...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) has become a profound problem for the new...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
The performance of mc-Si PERC solar cells can be significantly affected by LeTID. The underlying mec...
Light and elevated temperature induced degradation can be observed in multicrystalline Si PERC solar...
Light and elevated temperature induced degradation is observed for multicrystalline Si PERC-type sol...
Light and elevated temperature induced degradation (LeTID) varies significantly in multicrystalline ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) is observed for multicrystalline (mc) Si ...
The degradation kinetics of multicrystalline silicon solar cells and wafers at elevated temperature ...
Light (and elevated Temperature) Induced Degradation (LeTID) can seriously limit the efficiency of m...
Light and elevated temperature induced degradation (LeTID) is known to be affected by the last dark ...
Light-induced degradation (LID) of multicrystalline silicon (mc-Si) solar cell performance has been ...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) has become a profound problem for the new...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
The performance of mc-Si PERC solar cells can be significantly affected by LeTID. The underlying mec...
Light and elevated temperature induced degradation can be observed in multicrystalline Si PERC solar...
Light and elevated temperature induced degradation is observed for multicrystalline Si PERC-type sol...
Light and elevated temperature induced degradation (LeTID) varies significantly in multicrystalline ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) affects significantly the performance of ...
Light and elevated temperature induced degradation (LeTID) is observed for multicrystalline (mc) Si ...
The degradation kinetics of multicrystalline silicon solar cells and wafers at elevated temperature ...
Light (and elevated Temperature) Induced Degradation (LeTID) can seriously limit the efficiency of m...
Light and elevated temperature induced degradation (LeTID) is known to be affected by the last dark ...
Light-induced degradation (LID) of multicrystalline silicon (mc-Si) solar cell performance has been ...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) has become a profound problem for the new...