AbstractSince passivated emitter and rear cells (PERC) and other silicon solar cell concepts with evaporated aluminum (Al) as rear metallization are incompatible with a common solder process, in this work an annealing stable,solderable and long-term stable metallization scheme deposited by physical vapor deposition (PVD) is developed. The solder stack that complements the Al metallization consists of sputter deposited TiN/Ti/Ag or TiN/NiV/Ag, whereby the TiN layer serves as a diffusion barrier against Al. It is therefore optimized by varying sputter parameters and by stuffing the grain boundaries with oxygen. On the optimized stack a cell-interconnector can be conventionally soldered even after a strong annealing step of 15 min at 425°C, wh...
We study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and investigat...
AbstractWe study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and in...
In order to achieve cost competitiveness for energy production, the solar PV technology is dynamical...
In this work a solderable and temperature-stable rear metallization based on physical vapour deposit...
An evaporated Al layer is known as an excellent rear metallization for highly efficient solar cells,...
AbstractEvaporated Al as metallization for silicon solar cells may be profitable as it requires less...
Aluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost efficient...
AbstractAluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost e...
AbstractWe investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type c...
Silicon solar cells with evaporated aluminum rear metallization suffer from incompatibility with com...
Foil metallized (FolMet) solar cells combine the high-efficiency PERC technology and a cost-efficien...
In this paper we present first results concerning different thermal evaporation processes for thin a...
Foil metallized solar cells combine the high-efficiency passivated emitter and rear cell technology ...
We investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type crystalli...
Results of an electroless displacement process for the deposition of inexpensive solderable metal on...
We study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and investigat...
AbstractWe study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and in...
In order to achieve cost competitiveness for energy production, the solar PV technology is dynamical...
In this work a solderable and temperature-stable rear metallization based on physical vapour deposit...
An evaporated Al layer is known as an excellent rear metallization for highly efficient solar cells,...
AbstractEvaporated Al as metallization for silicon solar cells may be profitable as it requires less...
Aluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost efficient...
AbstractAluminium, thermally evaporated with physical vapor deposition (PVD), is considered a cost e...
AbstractWe investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type c...
Silicon solar cells with evaporated aluminum rear metallization suffer from incompatibility with com...
Foil metallized (FolMet) solar cells combine the high-efficiency PERC technology and a cost-efficien...
In this paper we present first results concerning different thermal evaporation processes for thin a...
Foil metallized solar cells combine the high-efficiency passivated emitter and rear cell technology ...
We investigate process sequences for obtaining solderable Al/Ni:V/Ag contacts to PERC-type crystalli...
Results of an electroless displacement process for the deposition of inexpensive solderable metal on...
We study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and investigat...
AbstractWe study Ni:Si as a barrier material for the PVD metallization of silicon solar cells and in...
In order to achieve cost competitiveness for energy production, the solar PV technology is dynamical...