AbstractWe present a detailed study on aluminum-boron doping profiles formed in silicon by alloying from screen-printed aluminum pastes containing boron additives. We show that an increase in the effective peak temperature Tpeak,eff (determined from phase diagram calculations) of the alloying process leads to higher concentrations of both Al and B atoms within the alloyed p+ region, resulting in (i) higher potential barriers for electrons, but also (ii) increased densities of recombination-active Al defects. While the improved potential barrier predominates for Tpeak,eff ≲ 770°C, the increased defect density prevails for Tpeak,eff ≲ 800°C, thus defining an optimal effective peak temperature. Furthermore, we show that, by increasing the amou...
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. ...
A p+-doping method for silicon solar cells is presented whereby boron atoms from a pure boron (PureB...
AbstractWe present a detailed study on aluminum-boron doping profiles formed in silicon by alloying ...
We present a detailed study on aluminum-boron doping profiles formed in silicon by alloying from scr...
We present a detailed study on alloying from screen-printed aluminum pastes containing boron additiv...
We present a detailed analysis of the recombination characteristics of p+ regions alloyed into silic...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
We present a detailed study on aluminum-boron codoping of silicon by alloying from screen-printed al...
AbstractThe industrial process of silicon solar cells is mainly based on the aluminum back surface f...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
In this study, the contact formation of aluminum containing silver metallization pastes for boron em...
AbstractIn this study we investigate metal spike formation of screen-printed Ag/Al pastes during con...
For the contacting of boron-doped emitters with screen-printed metallization in n-type silicon solar...
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. ...
A p+-doping method for silicon solar cells is presented whereby boron atoms from a pure boron (PureB...
AbstractWe present a detailed study on aluminum-boron doping profiles formed in silicon by alloying ...
We present a detailed study on aluminum-boron doping profiles formed in silicon by alloying from scr...
We present a detailed study on alloying from screen-printed aluminum pastes containing boron additiv...
We present a detailed analysis of the recombination characteristics of p+ regions alloyed into silic...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
Alloying from screen-printed aluminum pastes on silicon is a simple, reliable and cost-effective met...
We present a detailed study on aluminum-boron codoping of silicon by alloying from screen-printed al...
AbstractThe industrial process of silicon solar cells is mainly based on the aluminum back surface f...
AbstractFor n-type solar cell concepts, B emitters are commonly diffused in a BBr3-based process. Ho...
In this study, the contact formation of aluminum containing silver metallization pastes for boron em...
AbstractIn this study we investigate metal spike formation of screen-printed Ag/Al pastes during con...
For the contacting of boron-doped emitters with screen-printed metallization in n-type silicon solar...
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. ...
A p+-doping method for silicon solar cells is presented whereby boron atoms from a pure boron (PureB...