AbstractWe present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+ emitters and back surface fields for n- and p-type silicon solar cells, respectively. We have investigated the structural properties of agglomerated Al-doped p+ Si regions which exhibit serious lateral thickness inhomogeneities. We refined an existing simple model based on wetting phenomena for the formation of agglomerated Al-p+ regions. According to the model, the thickness inhomogeneities are caused by the contraction of the Al-Si melt during alloying, leading to enhanced and decelerated Si recrystallization in the regions of melt accumulation and depletion, respectively. Furthermore, we demonstrate that the melt contraction can be delaye...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
Surface-passivated and surface-unpassivated aluminum-alloyed p +-layers are characterized. By varyin...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
We present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+ emitter...
This work focuses on simplifying the fabrication process of our near-industrial n-type silicon solar...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
This study summarises a detailed characterisation of structural and electrical properties of full-ar...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
In this work the formation of local p+-layers processed by small screen-printed Al-structures is inv...
For crystalline silicon solar cells having an alloyed aluminum back contact, open-circuit voltage in...
We present a detailed analysis of the recombination characteristics of p+ regions alloyed into silic...
We present a detailed study on incomplete ionization (i.i.) of aluminum acceptors in highly aluminum...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
Surface-passivated and surface-unpassivated aluminum-alloyed p +-layers are characterized. By varyin...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
We present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+ emitter...
This work focuses on simplifying the fabrication process of our near-industrial n-type silicon solar...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
This study summarises a detailed characterisation of structural and electrical properties of full-ar...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
In this work the formation of local p+-layers processed by small screen-printed Al-structures is inv...
For crystalline silicon solar cells having an alloyed aluminum back contact, open-circuit voltage in...
We present a detailed analysis of the recombination characteristics of p+ regions alloyed into silic...
We present a detailed study on incomplete ionization (i.i.) of aluminum acceptors in highly aluminum...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...
Surface-passivated and surface-unpassivated aluminum-alloyed p +-layers are characterized. By varyin...
As the thickness of silicon solar wafer and solar cells becomes thinner, the cells are subjected to ...