AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS) Si material suffered heavily from shunting problems. In combination with the low material quality, this led to decreased fill factor values and thus to significantly lower efficiency values compared to block-cast multicrystalline (mc) Si. In this study, a novel RGS material seeded on silicon substrate is investigated. Solar cells made from this new ‘quasi-mono’ material using a lab-type process show VOC values >600 mV and average fill factor values >78%, similar to standard mc-Si. This leads to cell efficiencies >16% (certified by ISE CalLab), which is an enormous progress compared to the former efficiency record of 14.4%. The obtained highe...
The worldwide increase in solar cell production may lead to a shortage of silicon material in the fo...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...
AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS)...
Kerf losses due to ingot and wafer sawing can be avoided by solidifying the silicon wafers directly ...
Ribbon Growth on Substrate (RGS) is a very promising low cost silicon ribbon material for photovolta...
Ribbon Growth on Substrate (RGS) is a low cost silicon ribbon material for photovoltaics. The RGS gr...
In this work, RGS (Ribbon Growth on Substrate) a ribbon silicon material from Bayer AG is characteri...
Ribbon Growth on Substrate (RGS) is a cost-effective method to produce silicon wafers directly from ...
Ribbon growth on substrate (RGS) silicon could be the crystalline silicon material for PV of the fut...
Ribbon Growth on Substrate (RGS) technology is a cost-effective approach in terms of silicon usage p...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Multicrystalline p-type wafers from 100% UMG-Si feedstock were used for two cell processes. The best...
The ribbon-growth-on-substrate (RGS) technology has the potential to produce wafers for PV at low co...
Silicon ribbons are grown directly out of the silicon melt in the required size and thickness. There...
The worldwide increase in solar cell production may lead to a shortage of silicon material in the fo...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...
AbstractTo date, solar cells made from kerf-less and cost-effective Ribbon Growth on Substrate (RGS)...
Kerf losses due to ingot and wafer sawing can be avoided by solidifying the silicon wafers directly ...
Ribbon Growth on Substrate (RGS) is a very promising low cost silicon ribbon material for photovolta...
Ribbon Growth on Substrate (RGS) is a low cost silicon ribbon material for photovoltaics. The RGS gr...
In this work, RGS (Ribbon Growth on Substrate) a ribbon silicon material from Bayer AG is characteri...
Ribbon Growth on Substrate (RGS) is a cost-effective method to produce silicon wafers directly from ...
Ribbon growth on substrate (RGS) silicon could be the crystalline silicon material for PV of the fut...
Ribbon Growth on Substrate (RGS) technology is a cost-effective approach in terms of silicon usage p...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Multicrystalline p-type wafers from 100% UMG-Si feedstock were used for two cell processes. The best...
The ribbon-growth-on-substrate (RGS) technology has the potential to produce wafers for PV at low co...
Silicon ribbons are grown directly out of the silicon melt in the required size and thickness. There...
The worldwide increase in solar cell production may lead to a shortage of silicon material in the fo...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...