The contact formation by screen printed metal pastes is widely employed in standard solar cell production. To expand the use of screen printed electrodes to n-type solar cells, both boron and phosphorus doped surfaces need to be contacted. To do so with a single material has some advantages especially for IBC solar cells. In this study we test four different screen printing pastes on different boron and phosphorus dopings and in combination with different silicon nitride thicknesses. Phosphorus doping could be contacted over a wide range of sheet resistances, nitride thicknesses and fast firing conditions, leaving much freedom to target the boron contacts. Boron dopings are successfully contacted with all materials, if no capping silicon ni...
AbstractUsing plated contacts, many of the challenges of metallizing high-efficiency n-type solar ce...
AbstractWe present a macroscopic and microscopic analysis of the contact formation of two different ...
To ensure that photovoltaics contributes significantly to future world energy production, the cost p...
This work demonstrates low-ohmic electrical contacting of phosphorus- and boron-doped surfaces (text...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
In the production of n-type Si solar cells, B diffusion is commonly applied to form the p+ emitter. ...
For n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. However, t...
For n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. However, t...
Using plated contacts, many of the challenges of metallizing high-efficiency n-type solar cells can ...
This paper shows that Boron pastes can make emitter and back surface field (BSF) formation a simple ...
For the contacting of boron-doped emitters with screen-printed metallization in n-type silicon solar...
Seed layer printed, fired and plated front side contacts are an industrial feasible high-efficiency ...
In this work we combine the firing stable Al2O3 passivation of a boron emitter with an industrially ...
Screen printed boron doping paste can be used as a cost-effective and highly flexible dopant source ...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
AbstractUsing plated contacts, many of the challenges of metallizing high-efficiency n-type solar ce...
AbstractWe present a macroscopic and microscopic analysis of the contact formation of two different ...
To ensure that photovoltaics contributes significantly to future world energy production, the cost p...
This work demonstrates low-ohmic electrical contacting of phosphorus- and boron-doped surfaces (text...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
In the production of n-type Si solar cells, B diffusion is commonly applied to form the p+ emitter. ...
For n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. However, t...
For n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. However, t...
Using plated contacts, many of the challenges of metallizing high-efficiency n-type solar cells can ...
This paper shows that Boron pastes can make emitter and back surface field (BSF) formation a simple ...
For the contacting of boron-doped emitters with screen-printed metallization in n-type silicon solar...
Seed layer printed, fired and plated front side contacts are an industrial feasible high-efficiency ...
In this work we combine the firing stable Al2O3 passivation of a boron emitter with an industrially ...
Screen printed boron doping paste can be used as a cost-effective and highly flexible dopant source ...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
AbstractUsing plated contacts, many of the challenges of metallizing high-efficiency n-type solar ce...
AbstractWe present a macroscopic and microscopic analysis of the contact formation of two different ...
To ensure that photovoltaics contributes significantly to future world energy production, the cost p...