The reduction of void formation in local Al contact structures is of high interest in studies dealing with passivated emitter and rear contact (PERC) solar cells. So far, several processing parameters and their impact on local contact formation were investigated in detail. However, up to now density variation of Al in dependence on temperature and Si content in the melt were not taken into account as a principal reason for void formation. In this context the current assumption of a constant volume of the Al paste particles is discussed in more detail. Based on the results of energy dispersive X-ray spectroscopy, void formation implies either an expansion of paste particles or their burst during contact Formation.publishe
AbstractWe present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+...
In this study we investigate metal spike formation of screen-printed Ag/Al pastes during contact fir...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
Key aspect of this work is the investigation of local Al contacts with regard to void formation unde...
Passivated emitter and rear contact (PERC) solar cells will dominate the solar cell production in th...
AbstractPassivated emitter and rear contact (PERC) solar cells will dominate the solar cell producti...
Passivated emitter and rear (PERC) solar cells can show void formation within their metallized local...
Ideally formed local Al-contacts of passivated emitter and rear contact solar (PERC) cells feature a...
AbstractPassivated emitter and rear (PERC) solar cells can show void formation within their metalliz...
AbstractAdvanced solar cell contacts feature local contacts to p- and p+- Si. In this review existin...
We present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+ emitter...
AbstractIdeally formed local Al-contacts of passivated emitter and rear contact solar (PERC) cells f...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
Contact formation with silver (Ag) thick film pastes on boron emitters of n-type crystalline silicon...
For crystalline silicon solar cells having an alloyed aluminum back contact, open-circuit voltage in...
AbstractWe present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+...
In this study we investigate metal spike formation of screen-printed Ag/Al pastes during contact fir...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...
Key aspect of this work is the investigation of local Al contacts with regard to void formation unde...
Passivated emitter and rear contact (PERC) solar cells will dominate the solar cell production in th...
AbstractPassivated emitter and rear contact (PERC) solar cells will dominate the solar cell producti...
Passivated emitter and rear (PERC) solar cells can show void formation within their metallized local...
Ideally formed local Al-contacts of passivated emitter and rear contact solar (PERC) cells feature a...
AbstractPassivated emitter and rear (PERC) solar cells can show void formation within their metalliz...
AbstractAdvanced solar cell contacts feature local contacts to p- and p+- Si. In this review existin...
We present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+ emitter...
AbstractIdeally formed local Al-contacts of passivated emitter and rear contact solar (PERC) cells f...
We present a comprehensive study on the rear contact formation of rear surface-passivated silicon so...
Contact formation with silver (Ag) thick film pastes on boron emitters of n-type crystalline silicon...
For crystalline silicon solar cells having an alloyed aluminum back contact, open-circuit voltage in...
AbstractWe present a detailed study on the formation of full-area screen-printed aluminum-alloyed p+...
In this study we investigate metal spike formation of screen-printed Ag/Al pastes during contact fir...
We present a detailed study on the rear contact formation of rear-surface-passivated silicon solar c...