In this work, we applied internal quantum efficiency mapping to study the recombination activity of grain boundaries in High Performance Multicrystalline Silicon under different processing conditions. Wafers were divided into groups and underwent different thermal processing, consisting of phosphorus diffusion gettering and surface passivation with hydrogen rich layers. After these thermal treatments, wafers were processed into heterojunction with intrinsic thin layer solar cells. Light Beam Induced Current and Electron Backscatter Diffraction were applied to analyse the influence of thermal treatment during standard solar cell processing on different types of grain boundaries. The results show that after cell processing, most random-angle ...
Silicon represents the most economic feedstock for an environmentally friendly energy generation by ...
Wafers from a hybrid silicon ingot seeded in part for High Performance Multicrystalline, in part for...
High performance multicrystalline silicon wafers used in solar cell processing have been investigate...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
Gettering and passivation steps during solar cell processing influence the recombination activity of...
We compare the recombination properties of grain boundaries in conventionally-solidified p-type, nty...
In this work we examine the effectiveness of hydrogen passivation at grain boundaries as a function ...
We examine the effectiveness of hydrogen passivation as a function of defect type and microstructure...
We compare the recombination properties of a large number of grain boundaries in multicrystalline si...
High performance multicrystalline silicon wafers used in solar cell processing have been investigate...
Silicon represents the most economic feedstock for an environmentally friendly energy generation by ...
Silicon represents the most economic feedstock for an environmentally friendly energy generation by ...
Wafers from a hybrid silicon ingot seeded in part for High Performance Multicrystalline, in part for...
High performance multicrystalline silicon wafers used in solar cell processing have been investigate...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
In this work, we applied internal quantum efficiency mapping to study the recombination activity of ...
Gettering and passivation steps during solar cell processing influence the recombination activity of...
We compare the recombination properties of grain boundaries in conventionally-solidified p-type, nty...
In this work we examine the effectiveness of hydrogen passivation at grain boundaries as a function ...
We examine the effectiveness of hydrogen passivation as a function of defect type and microstructure...
We compare the recombination properties of a large number of grain boundaries in multicrystalline si...
High performance multicrystalline silicon wafers used in solar cell processing have been investigate...
Silicon represents the most economic feedstock for an environmentally friendly energy generation by ...
Silicon represents the most economic feedstock for an environmentally friendly energy generation by ...
Wafers from a hybrid silicon ingot seeded in part for High Performance Multicrystalline, in part for...
High performance multicrystalline silicon wafers used in solar cell processing have been investigate...