We investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type crystalline Si solar cells by in-line Al evaporation. For a high cell efficiency the evaporated aluminum must be annealed at 350 °C for about 5 min. We find that annealing the Al/Ni:V/Ag metallization stack at temperatures above 150 °C destroys the solderability of the wetting layer. A solution for this problem is to first deposit the 2.5 μm Al layer by evaporation, then anneal the cell at 350 °C for 10 min, and finally sputter a double layer of Ni:V/Ag with respective thickness values of 200 nm and 25 nm. This process leads to a contact resistivity lower than 1 mΩcm2. The solderablility is proven by a peel force greater than 3 N/mm. We present a sold...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
AbstractWe investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type c...
Locally aluminum-doped p-type silicon regions are formed by in-line high-rate evaporation of aluminu...
AbstractWe study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and in...
AbstractLocally aluminum-doped p-type silicon regions are formed by in-line high-rate evaporation of...
AbstractEvaporated Al as metallization for silicon solar cells may be profitable as it requires less...
Results of an electroless displacement process for the deposition of inexpensive solderable metal on...
Silicon solar cells with evaporated aluminum rear metallization suffer from incompatibility with com...
AbstractAluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost e...
AbstractSince passivated emitter and rear cells (PERC) and other silicon solar cell concepts with ev...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
ABSTRACT: We evaluate a novel high-throughput thermal evaporation system (ATON500, Applied Materials...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
AbstractWe investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type c...
Locally aluminum-doped p-type silicon regions are formed by in-line high-rate evaporation of aluminu...
AbstractWe study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and in...
AbstractLocally aluminum-doped p-type silicon regions are formed by in-line high-rate evaporation of...
AbstractEvaporated Al as metallization for silicon solar cells may be profitable as it requires less...
Results of an electroless displacement process for the deposition of inexpensive solderable metal on...
Silicon solar cells with evaporated aluminum rear metallization suffer from incompatibility with com...
AbstractAluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost e...
AbstractSince passivated emitter and rear cells (PERC) and other silicon solar cell concepts with ev...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
ABSTRACT: We evaluate a novel high-throughput thermal evaporation system (ATON500, Applied Materials...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...