AbstractWith the objective of high efficiency solar cells rear side passivation with local aluminium back surface field and dielectric reflection (Al-LBSFR) were developed at Centrotherm and cell efficiencies of 19.4% were achieved. In this paper major physical properties of the developed technology, named centaurus technology, are presented.A low reflection on the solar cell front side is achieved by a textured surface, which enables in particular an inclined light entry at the solar cell front side, which is mandatory for a total light reflection on the solar cell dielectric rear side. Likewise a smooth instead of a textured rear side surface was more suitable for a high rear reflection and also more appropriate for better rear surface pa...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
Presented at the 4th World Conference on Photovoltaic Energy Conversion; Hawaii, USA; May 7-12, 2006...
We compare identically processed n- and p-type silicon solar cells with each other featuring alumini...
AbstractWith the objective of high efficiency solar cells rear side passivation with local aluminium...
AbstractCurrently leading crystalline solar cell technologies comprehend rear side passivation with ...
This diploma thesis was focused on enhancing the rear side performance of the improved PhosTop solar...
AbstractSilicon wafer solar cells with a local back surface field (“LBSF”) formed by aluminium are c...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
High-efficiency solar cells have to be designed carefully in order to minimize all possible losses. ...
Bulk crystalline Silicon solar cells are covering more than 85% of the world’s roof top module insta...
AbstractIn this paper, we investigate the surface recombination of local screen-printed aluminum con...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
AbstractEfficiencies of large area n-type silicon solar cells with a screen printed rear side alumin...
AbstractIn this paper, we investigate the impact of the rear surface passivation, the silicon base m...
In this work, aluminum oxide films with excellent passivation effects were prepared on the rear-side...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
Presented at the 4th World Conference on Photovoltaic Energy Conversion; Hawaii, USA; May 7-12, 2006...
We compare identically processed n- and p-type silicon solar cells with each other featuring alumini...
AbstractWith the objective of high efficiency solar cells rear side passivation with local aluminium...
AbstractCurrently leading crystalline solar cell technologies comprehend rear side passivation with ...
This diploma thesis was focused on enhancing the rear side performance of the improved PhosTop solar...
AbstractSilicon wafer solar cells with a local back surface field (“LBSF”) formed by aluminium are c...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
High-efficiency solar cells have to be designed carefully in order to minimize all possible losses. ...
Bulk crystalline Silicon solar cells are covering more than 85% of the world’s roof top module insta...
AbstractIn this paper, we investigate the surface recombination of local screen-printed aluminum con...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
AbstractEfficiencies of large area n-type silicon solar cells with a screen printed rear side alumin...
AbstractIn this paper, we investigate the impact of the rear surface passivation, the silicon base m...
In this work, aluminum oxide films with excellent passivation effects were prepared on the rear-side...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
Presented at the 4th World Conference on Photovoltaic Energy Conversion; Hawaii, USA; May 7-12, 2006...
We compare identically processed n- and p-type silicon solar cells with each other featuring alumini...