AbstractWe present metal wrap through passivated emitter and rear cells (MWT-PERC) on p-type Czochralski silicon (Cz-Si) using advanced metallization approaches. Front surface metallization is performed either with a one-step approach (conventional thick film screen printing) or with a more advanced two-step approach, consisting of aerosol printing of a silver seed layer and subsequent silver electroplating. High short circuit current densities of up to 39.9mA/cm2 indicate excellent light trapping and decreased front side shading due to the absence of busbars as well as high quality surface passivation. Both metallization technologies allow for conversion efficiencies of 18.7% for 125 x 125 mm2 sized Cz-Si MWT-PERC solar cells. Furthermore,...
On the way to higher efficiencies, back contact solar cells seem to be very promising. Especially, t...
We present metal wrap through passivated emitter and rear solar cells (MWT-PERC) on monocrystalline ...
On the way to higher efficiencies, back contact solar cells are a promising alternative to conventio...
We present metal wrap through passivated emitter and rear cells (MWT-PERC) on p-type Czochralski sil...
AbstractWe present metal wrap through passivated emitter and rear cells (MWT-PERC) on p-type Czochra...
We present thin metal-wrap-through silicon solar cells with passivated surfaces fabricated from Czoc...
This work presents large-area metal wrap through (MWT) solar cells with passivated surfaces made fro...
The development of cost-effective and highly efficient solar cells is a primary goal of current rese...
Solar cells with screen printed metallization have been dominating the PV market for decades due to ...
Within this work, we present actual results in the field of screen printing front side metallization...
The present work is an evaluation of the possibilities that electrochemical processes offer for the ...
We present small-area metal wrap through solar cells with passivated rear side (MWT-PERC), screen-pr...
For the fabrication of front side grids with a higher efficiency potential than screen-printed conta...
In this work we present our latest results using aluminium foil as rear side metallization for solar...
This Ph.D. thesis is focused on the development and optimization of front and rear side metallizatio...
On the way to higher efficiencies, back contact solar cells seem to be very promising. Especially, t...
We present metal wrap through passivated emitter and rear solar cells (MWT-PERC) on monocrystalline ...
On the way to higher efficiencies, back contact solar cells are a promising alternative to conventio...
We present metal wrap through passivated emitter and rear cells (MWT-PERC) on p-type Czochralski sil...
AbstractWe present metal wrap through passivated emitter and rear cells (MWT-PERC) on p-type Czochra...
We present thin metal-wrap-through silicon solar cells with passivated surfaces fabricated from Czoc...
This work presents large-area metal wrap through (MWT) solar cells with passivated surfaces made fro...
The development of cost-effective and highly efficient solar cells is a primary goal of current rese...
Solar cells with screen printed metallization have been dominating the PV market for decades due to ...
Within this work, we present actual results in the field of screen printing front side metallization...
The present work is an evaluation of the possibilities that electrochemical processes offer for the ...
We present small-area metal wrap through solar cells with passivated rear side (MWT-PERC), screen-pr...
For the fabrication of front side grids with a higher efficiency potential than screen-printed conta...
In this work we present our latest results using aluminium foil as rear side metallization for solar...
This Ph.D. thesis is focused on the development and optimization of front and rear side metallizatio...
On the way to higher efficiencies, back contact solar cells seem to be very promising. Especially, t...
We present metal wrap through passivated emitter and rear solar cells (MWT-PERC) on monocrystalline ...
On the way to higher efficiencies, back contact solar cells are a promising alternative to conventio...