High Performance multicrystalline silicon ingots are mostly produced with seeded growth on small size silicon material, which determines the beneficial initial grain structure and orientations of the crystallites. A drawback of this approach is the increased area of low minority charge carrier lifetime in the lower part of the ingot and thus a worse yield. Also, the solidification process time is increased as the seed has to remain solid in a well controlled manner. Both drawbacks can be addressed by using a thin seeding layer on the crucible bottom, which has a higher melting point than silicon. The area of low minority carrier lifetime at the ingot bottom is comparable to standard multicrystalline silicon, whereas the crystal structure is...
More than 90% of all Photovoltaic (PV) installations are based on crystalline silicon, several hundr...
Due to the price pressure for silicon photovoltaics the loss of silicon material during directional ...
AbstractMulticrystalline silicon has a high commercial potential for solar cell applications. The fu...
Multicrystalline silicon suitable for high efficient n-type solar cells has been developed by direct...
This work targets multiple approaches for controlling the initial growth conditions of directional s...
Two silicon ingots with different seed plate configurations were crystallized by directional solidif...
High performance multi-crystalline silicon (HPM-Si) for the use in photovoltaics is characterized by...
The grain structure of high-performance (HP) multicrystalline silicon (mc-Si) is characterized by a ...
We have developed a method for growing high quality multicrystalline silicon (mc-Si) ingots for hig...
The use of cast-mono technology to control the development of structural defects during the block ca...
Different silicon feedstock materials, Single Crystalline Crushed (SCS), Fluidized-Bed-Reactor (FBR)...
Solar cells convert sunlight into electrical energy using the photo effect. With a mar-ket share of ...
Wafers from three heights and two different lateral positions (corner and centre) of four industrial...
International audienceIn High Performance Multi-Crystalline-Silicon (HPMC-Si) ingots, small seed gra...
ABSTRACT: Solar Grade Silicon obtained by purification of metallurgical grade Silicon becomes an im...
More than 90% of all Photovoltaic (PV) installations are based on crystalline silicon, several hundr...
Due to the price pressure for silicon photovoltaics the loss of silicon material during directional ...
AbstractMulticrystalline silicon has a high commercial potential for solar cell applications. The fu...
Multicrystalline silicon suitable for high efficient n-type solar cells has been developed by direct...
This work targets multiple approaches for controlling the initial growth conditions of directional s...
Two silicon ingots with different seed plate configurations were crystallized by directional solidif...
High performance multi-crystalline silicon (HPM-Si) for the use in photovoltaics is characterized by...
The grain structure of high-performance (HP) multicrystalline silicon (mc-Si) is characterized by a ...
We have developed a method for growing high quality multicrystalline silicon (mc-Si) ingots for hig...
The use of cast-mono technology to control the development of structural defects during the block ca...
Different silicon feedstock materials, Single Crystalline Crushed (SCS), Fluidized-Bed-Reactor (FBR)...
Solar cells convert sunlight into electrical energy using the photo effect. With a mar-ket share of ...
Wafers from three heights and two different lateral positions (corner and centre) of four industrial...
International audienceIn High Performance Multi-Crystalline-Silicon (HPMC-Si) ingots, small seed gra...
ABSTRACT: Solar Grade Silicon obtained by purification of metallurgical grade Silicon becomes an im...
More than 90% of all Photovoltaic (PV) installations are based on crystalline silicon, several hundr...
Due to the price pressure for silicon photovoltaics the loss of silicon material during directional ...
AbstractMulticrystalline silicon has a high commercial potential for solar cell applications. The fu...