Light and elevated temperature induced degradation is observed for multicrystalline Si PERC-type solar cells, strongly limiting solar cell parameters under operation conditions. In this contribution, we investigate the effect of temperature on the degradation and regeneration kinetics of lifetime samples with different p-doping. While there is no fundamental difference visible between B- and Ga-doped materials, Ga-doped samples generally had a lower starting lifetimes and showed a slower degradation process. Ungettered Ga-doped samples did not regenerate within the applied time frame. For higher treatment temperatures (≥200°C) lifetimes after regeneration exceeded the initial values before degradation for both gettered materials. There are ...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) varies significantly in multicrystalline ...
Light- and elevated temperature-induced degradation (LeTID) in multicrystalline silicon can reduce t...
Light and elevated temperature induced degradation can be observed in multicrystalline Si PERC solar...
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) affects significantly the performance of ...
The performance of mc-Si PERC solar cells can be significantly affected by LeTID. The underlying mec...
The degradation kinetics of multicrystalline silicon solar cells and wafers at elevated temperature ...
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 in multicrystalline silicon can reduce the effic...
Light-induced degradation (LID) of multicrystalline silicon (mc-Si) solar cell performance has been ...
Light (and elevated Temperature) Induced Degradation (LeTID) can seriously limit the efficiency of m...
AbstractIn this contribution, we focus on improving the fundamental understanding of the carrier lif...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) varies significantly in multicrystalline ...
Light- and elevated temperature-induced degradation (LeTID) in multicrystalline silicon can reduce t...
Light and elevated temperature induced degradation can be observed in multicrystalline Si PERC solar...
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) affects significantly the performance of ...
The performance of mc-Si PERC solar cells can be significantly affected by LeTID. The underlying mec...
The degradation kinetics of multicrystalline silicon solar cells and wafers at elevated temperature ...
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 in multicrystalline silicon can reduce the effic...
Light-induced degradation (LID) of multicrystalline silicon (mc-Si) solar cell performance has been ...
Light (and elevated Temperature) Induced Degradation (LeTID) can seriously limit the efficiency of m...
AbstractIn this contribution, we focus on improving the fundamental understanding of the carrier lif...
Light-induced degradation (LID) is a well-known problem faced by p-type Czochralski (Cz) monocrystal...
Light and elevated temperature induced degradation (LeTID) varies significantly in multicrystalline ...
Light- and elevated temperature-induced degradation (LeTID) in multicrystalline silicon can reduce t...