AbstractSilicon wafer solar cells with a local back surface field (“LBSF”) formed by aluminium are currently intensively investigated for industrial application. The non-metallised rear surface regions of this structure are passivated by a dielectric film, whereby this film receives line or point openings for contact formation. In this work we report on Al-LBSF solar cells with thermally evaporated and screen-printed Al as the rear metal and screen-printed silver as the front contact. The interaction of Al and the locally opened dielectric film is investigated in detail, using techniques such as photoluminescence imaging and scanning electron microscopy. The impacts of the laser patterns used for opening of the dielectric film and void form...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
AbstractAdvanced solar cell contacts feature local contacts to p- and p+- Si. In this review existin...
Silicon wafers still represent a significant part of the costs of current solar modules. Passivated ...
AbstractSilicon wafer solar cells with a local back surface field (“LBSF”) formed by aluminium are c...
AbstractAluminium local back surface field (Al-LBSF) cells are currently being investigated for the ...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
AbstractIn this paper, we investigate the surface recombination of local screen-printed aluminum con...
Presented at the 4th World Conference on Photovoltaic Energy Conversion; Hawaii, USA; May 7-12, 2006...
Abstract: Surface recombination loss should be reduced for high efficiency of solar cells. To reduce...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
AbstractWith the objective of high efficiency solar cells rear side passivation with local aluminium...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
For many years, the photovoltaic industry has been using Al to form the back contact of crystalline ...
In photovoltaic solar cells manufacturing, we are confronted to the perpetual challenge for conversi...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
AbstractAdvanced solar cell contacts feature local contacts to p- and p+- Si. In this review existin...
Silicon wafers still represent a significant part of the costs of current solar modules. Passivated ...
AbstractSilicon wafer solar cells with a local back surface field (“LBSF”) formed by aluminium are c...
AbstractAluminium local back surface field (Al-LBSF) cells are currently being investigated for the ...
In this paper, we investigate the surface recombination of local screen-printed aluminum contacts ap...
AbstractIn this paper, we investigate the surface recombination of local screen-printed aluminum con...
Presented at the 4th World Conference on Photovoltaic Energy Conversion; Hawaii, USA; May 7-12, 2006...
Abstract: Surface recombination loss should be reduced for high efficiency of solar cells. To reduce...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
AbstractWith the objective of high efficiency solar cells rear side passivation with local aluminium...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
AbstractThis work studies the performance of commercially available Al pastes for the rear side cont...
For many years, the photovoltaic industry has been using Al to form the back contact of crystalline ...
In photovoltaic solar cells manufacturing, we are confronted to the perpetual challenge for conversi...
In this paper, we investigate the impact of the rear surface passivation, the silicon base material ...
AbstractAdvanced solar cell contacts feature local contacts to p- and p+- Si. In this review existin...
Silicon wafers still represent a significant part of the costs of current solar modules. Passivated ...