The authors have performed studies on multicrystalline silicon used for solar cells in the as-grown state and after a series of processing and gettering steps. The principal goal of this work is to determine the rate limiting step for metal impurity gettering from multicrystalline silicon with an emphasis on the release of impurities from structural defects. Synchrotron-based x-ray fluorescence mapping was used to monitor the release process. Copper and nickel impurities were found to reside primarily at dislocations in the as-grown state of the material. Short annealing treatments rapidly dissolved the impurity agglomerates. Based on these results and modeling of the dissolution process, copper and nickel is in the form of small agglomerat...
The impact of the transition metals iron, chromium, nickel, titanium and copper on solar-cell perfor...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...
It is critical to understand the behavior of metallic impurities in polycrystalline silicon used for...
Interactions between structural defects and metallic impurities were studied in multicrystalline sil...
The extraction of metal impurities during phosphorus diffusion gettering (PDG) is one of the crucial...
The material quality of multicrystalline silicon is influenced by crystal defects and contaminations...
In recent years, high-performance multicrystalline silicon (HPMC-Si) has emerged as an attractive al...
ported to reduce the dislocation density in multicrystalline silicon (mc-Si), presumably by pairwise...
Phosphorus diffusion gettering of multicrystalline silicon solar cell materials generally fails to p...
Phosphorus diffusion gettering of multicrystalline silicon solar cell materials generally fails to p...
The atomic process, kinetics, and equilibrium thermodynamics underlying the gettering of transition-...
The detrimental influence of transition metals on minority carrier lifetime in solar cells and thus ...
The impact on solar cell performance of transition metals like iron, chromium, nickel, titanium and ...
In general, the charge carrier lifetime in n-type silicon is less sensitive to common dissolved meta...
The impact of the transition metals iron, chromium, nickel, titanium and copper on solar-cell perfor...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...
It is critical to understand the behavior of metallic impurities in polycrystalline silicon used for...
Interactions between structural defects and metallic impurities were studied in multicrystalline sil...
The extraction of metal impurities during phosphorus diffusion gettering (PDG) is one of the crucial...
The material quality of multicrystalline silicon is influenced by crystal defects and contaminations...
In recent years, high-performance multicrystalline silicon (HPMC-Si) has emerged as an attractive al...
ported to reduce the dislocation density in multicrystalline silicon (mc-Si), presumably by pairwise...
Phosphorus diffusion gettering of multicrystalline silicon solar cell materials generally fails to p...
Phosphorus diffusion gettering of multicrystalline silicon solar cell materials generally fails to p...
The atomic process, kinetics, and equilibrium thermodynamics underlying the gettering of transition-...
The detrimental influence of transition metals on minority carrier lifetime in solar cells and thus ...
The impact on solar cell performance of transition metals like iron, chromium, nickel, titanium and ...
In general, the charge carrier lifetime in n-type silicon is less sensitive to common dissolved meta...
The impact of the transition metals iron, chromium, nickel, titanium and copper on solar-cell perfor...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...
This article demonstrates an approach for multiscale characterisation of individual defects, such as...