AbstractWe report results on the development of a cost-effective all-screen-printed interdigitated back contact (IBC) solar cell process. The rear side interdigitated doping pattern is achieved using screen printed n-type and p-type dopant pastes, and thermal drive-in. Our process provides excellent spatial definition of the doping pattern necessary for fabrication of an IBC solar cell. The doping approach used in this work overcomes limitations associated with conventional pastes, notably poor lateral doping control and reduced bulk lifetime. We demonstrate that wafer lifetime remains high, well above 1.5 msec, at the end of the solar cell process, enabling high cell efficiencies. Contacts are also achieved using screen printed fire-throug...
The contact formation by screen printed metal pastes is widely employed in standard solar cell produ...
AbstractIn this work we have developed an innovative fabrication process of n-type interdigitated ba...
Reducing the wafer thickness for c-Si solar cell fabrication is an effective approach for cost-savin...
AbstractWe report results on the development of a cost-effective all-screen-printed interdigitated b...
AbstractBack-contact back-junction solar cell has the potential for high efficiency energy conversio...
Interdigitated back contact solar cells are made by screen printing dopant materials onto the back s...
The process of making Interdigitated Back Contact (IBC) solar cell is implemented by a novel simplif...
Interdigitated back-contact (IBC) solar cells with their unique structure, having both n and p doped...
Screen printed boron doping paste can be used as a cost-effective and highly flexible dopant source ...
Thin crystalline silicon layers deposited on inexpensive substrates present a promising approach to ...
AbstractWe present the first laser doped screen-printed back contact silicon solar cells with an eff...
Continuous cost reduction of silicon-based solar cells is needed to lower the process time and incre...
Interdigitated back contact (IBC) silicon solar cells with 25.6% efficiency at 10 W/cm/sup 2/ and 24...
All-screen-printed back-contact back-junction silicon solar cells with aluminum-alloyed emitter on n...
AbstractIn the photovoltaic industry, screen printing accounts for majority of the metallisation pro...
The contact formation by screen printed metal pastes is widely employed in standard solar cell produ...
AbstractIn this work we have developed an innovative fabrication process of n-type interdigitated ba...
Reducing the wafer thickness for c-Si solar cell fabrication is an effective approach for cost-savin...
AbstractWe report results on the development of a cost-effective all-screen-printed interdigitated b...
AbstractBack-contact back-junction solar cell has the potential for high efficiency energy conversio...
Interdigitated back contact solar cells are made by screen printing dopant materials onto the back s...
The process of making Interdigitated Back Contact (IBC) solar cell is implemented by a novel simplif...
Interdigitated back-contact (IBC) solar cells with their unique structure, having both n and p doped...
Screen printed boron doping paste can be used as a cost-effective and highly flexible dopant source ...
Thin crystalline silicon layers deposited on inexpensive substrates present a promising approach to ...
AbstractWe present the first laser doped screen-printed back contact silicon solar cells with an eff...
Continuous cost reduction of silicon-based solar cells is needed to lower the process time and incre...
Interdigitated back contact (IBC) silicon solar cells with 25.6% efficiency at 10 W/cm/sup 2/ and 24...
All-screen-printed back-contact back-junction silicon solar cells with aluminum-alloyed emitter on n...
AbstractIn the photovoltaic industry, screen printing accounts for majority of the metallisation pro...
The contact formation by screen printed metal pastes is widely employed in standard solar cell produ...
AbstractIn this work we have developed an innovative fabrication process of n-type interdigitated ba...
Reducing the wafer thickness for c-Si solar cell fabrication is an effective approach for cost-savin...