In this paper, we present measurements and modeling of the reduction in dissolved iron Fe; concentrations near grain boundaries in multicrystalline silicon (mc-Si) wafers. The measurements of the interstitial Fe concentrations are obtained via photoluminescence images taken before and after iron-boron pair dissociation. A simple diffusion-capture model was developed to characterize the removal of interstitial Fe by the gettering sites. The model is based on a numerical solution to the 1-D diffusion equation with two fitting parameters: the diffusion length of dissolved Fe atoms and the effective gettering velocity at the gettering site. By comparing the simulation with a controlled phosphorous gettering process, the model is shown to give g...
AbstractThe role of iron in crystalline silicon solar cells has been extensively investigated, yet t...
The efficacy of higher-temperature gettering processes in reducing precipitated iron concentrations ...
The behavior of iron in multicrystalline silicon during solar cell processing is analyzed by spatial...
Abstract—In this paper, we present measurements and model-ing of the reduction in dissolved iron Fe;...
In this paper a simple one-dimensional diffusion-capture model is used to effectively characterise t...
We present high-resolution images of the lateral distribution of interstitial iron across wafers fro...
We have extended the development of a recent interstitial iron imaging technique based on photolumin...
Abstract. The removal of dissolved iron from the wafer bulk is important for the performance of p-ty...
Abstract. In multicrystalline silicon for photovoltaic applications, high concentrations of iron are...
The influence of phosphorus diffusion gettering on recombination at grain boundaries has been studie...
The influence of phosphorus diffusion gettering on recombination at grain boundaries has been studie...
The role of iron in crystalline silicon solar cells has been extensively investigated, yet the inter...
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...
A direct comparison of boron diffusion gettering, phosphorus gettering, and aluminum annealing gette...
AbstractThe role of iron in crystalline silicon solar cells has been extensively investigated, yet t...
The efficacy of higher-temperature gettering processes in reducing precipitated iron concentrations ...
The behavior of iron in multicrystalline silicon during solar cell processing is analyzed by spatial...
Abstract—In this paper, we present measurements and model-ing of the reduction in dissolved iron Fe;...
In this paper a simple one-dimensional diffusion-capture model is used to effectively characterise t...
We present high-resolution images of the lateral distribution of interstitial iron across wafers fro...
We have extended the development of a recent interstitial iron imaging technique based on photolumin...
Abstract. The removal of dissolved iron from the wafer bulk is important for the performance of p-ty...
Abstract. In multicrystalline silicon for photovoltaic applications, high concentrations of iron are...
The influence of phosphorus diffusion gettering on recombination at grain boundaries has been studie...
The influence of phosphorus diffusion gettering on recombination at grain boundaries has been studie...
The role of iron in crystalline silicon solar cells has been extensively investigated, yet the inter...
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...
A direct comparison of boron diffusion gettering, phosphorus gettering, and aluminum annealing gette...
AbstractThe role of iron in crystalline silicon solar cells has been extensively investigated, yet t...
The efficacy of higher-temperature gettering processes in reducing precipitated iron concentrations ...
The behavior of iron in multicrystalline silicon during solar cell processing is analyzed by spatial...