Ribbon Growth on Substrate (RGS) technology is a cost-effective approach in terms of silicon usage per watt peak. The wafers are cast directly out of the melt onto reusable substrates. This process omits material losses which occur e.g. by wire-sawing in standard blockcast wafering techniques. Also the wafers can be cast at a high production speed in the order of one wafer per second. However, the material suffers from various crystal defects and has grain sizes between 0.1 mm and 1 mm. To develop and adjust new cell designs, we investigate the effect of a selective emitter structure on RGS cells. To realize a selective emitter the etch-back approach is used. It is found that the expected gain of jsc is accompanied by losses in the fill fac...
AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS)...
The combination of Rapid Thermal Processing (RTP) and Screen Printing (SP) of phosphorus pastes has ...
Selectively doped (SD) solar cells have advantages of lower front diffusion recombination, lower con...
Ribbon Growth on Substrate (RGS) is a cost-effective method to produce silicon wafers directly from ...
Ribbon Growth on Substrate (RGS) is a very promising low cost silicon ribbon material for photovolta...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Kerf losses due to ingot and wafer sawing can be avoided by solidifying the silicon wafers directly ...
Ribbon Growth on Substrate (RGS) is a low cost silicon ribbon material for photovoltaics. The RGS gr...
The ribbon-growth-on-substrate (RGS) technology has the potential to produce wafers for PV at low co...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Ribbon Growth on Substrate (RGS) silicon wafers are cast directly from the melt onto reusable substr...
In this work, RGS (Ribbon Growth on Substrate) a ribbon silicon material from Bayer AG is characteri...
In this paper we present latest results in the development of a process for the fabrication of a sel...
In this paper we present latest results in the development of a process for the abrication of a sel...
We have developed a simple and industrially applicable selective emitter cell process using only one...
AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS)...
The combination of Rapid Thermal Processing (RTP) and Screen Printing (SP) of phosphorus pastes has ...
Selectively doped (SD) solar cells have advantages of lower front diffusion recombination, lower con...
Ribbon Growth on Substrate (RGS) is a cost-effective method to produce silicon wafers directly from ...
Ribbon Growth on Substrate (RGS) is a very promising low cost silicon ribbon material for photovolta...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Kerf losses due to ingot and wafer sawing can be avoided by solidifying the silicon wafers directly ...
Ribbon Growth on Substrate (RGS) is a low cost silicon ribbon material for photovoltaics. The RGS gr...
The ribbon-growth-on-substrate (RGS) technology has the potential to produce wafers for PV at low co...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Ribbon Growth on Substrate (RGS) silicon wafers are cast directly from the melt onto reusable substr...
In this work, RGS (Ribbon Growth on Substrate) a ribbon silicon material from Bayer AG is characteri...
In this paper we present latest results in the development of a process for the fabrication of a sel...
In this paper we present latest results in the development of a process for the abrication of a sel...
We have developed a simple and industrially applicable selective emitter cell process using only one...
AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS)...
The combination of Rapid Thermal Processing (RTP) and Screen Printing (SP) of phosphorus pastes has ...
Selectively doped (SD) solar cells have advantages of lower front diffusion recombination, lower con...