The successful implementation of industrially feasible local boron dopings as local back surface field (LBSF) for high-efficiency silicon solar cells processed with laser chemical processing (LCP) is demonstrated for the first time. The processed passivated-emitter rear locally diffused solar cells with LCP LBSFs show cell efficiencies of up to 20.9% with a cell efficiency benefit of up to 0.3-0.4%abs. in comparison to the reference passivated emitter and rear cells processed with a doping-free LCP opening. The results show the potential of LCP to create boron dopings in order to decrease the contact resistance and reduce the minority carrier recombination at the local metal contacts in order to improve the fill factor and the open-circuit ...
AbstractWe present the first laser doped screen-printed back contact silicon solar cells with an eff...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
AbstractWe present a universal passivation for both, phosphorus and boron doped surfaces of interdig...
This work shows the possibility to use local laser chemical processing (LCP) boron dopings to create...
The analysis of local boron dopings formed with an alkaline aqueous boron solution as doping medium ...
AbstractA localized back surface field (LBSF) cell was developed using boron laser doping (LD) and s...
AbstractN-type solar cells are being developed as next generation photovoltaic solar cells, and have...
We report on the development of a laser doping process for the formation of a local back surface fie...
AbstractA localized back surface field (LBSF) cell was developed using boron laser doping (LD) and s...
An overview of the selected current research focuses of Laser Chemical Processing (LCP) technology a...
AbstractN-type solar cells are being developed as next generation photovoltaic solar cells, and have...
The introduction of selective emitters underneath the front contacts of solar cells can considerably...
Cost effective solar cells are paramount for solar power to compete with traditional power generatio...
AbstractWe present the first laser doped interdigitated back contacted solar cells with efficiency η...
The highest energy conversion efficiencies in the field of silicon-based photovoltaics have been ach...
AbstractWe present the first laser doped screen-printed back contact silicon solar cells with an eff...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
AbstractWe present a universal passivation for both, phosphorus and boron doped surfaces of interdig...
This work shows the possibility to use local laser chemical processing (LCP) boron dopings to create...
The analysis of local boron dopings formed with an alkaline aqueous boron solution as doping medium ...
AbstractA localized back surface field (LBSF) cell was developed using boron laser doping (LD) and s...
AbstractN-type solar cells are being developed as next generation photovoltaic solar cells, and have...
We report on the development of a laser doping process for the formation of a local back surface fie...
AbstractA localized back surface field (LBSF) cell was developed using boron laser doping (LD) and s...
An overview of the selected current research focuses of Laser Chemical Processing (LCP) technology a...
AbstractN-type solar cells are being developed as next generation photovoltaic solar cells, and have...
The introduction of selective emitters underneath the front contacts of solar cells can considerably...
Cost effective solar cells are paramount for solar power to compete with traditional power generatio...
AbstractWe present the first laser doped interdigitated back contacted solar cells with efficiency η...
The highest energy conversion efficiencies in the field of silicon-based photovoltaics have been ach...
AbstractWe present the first laser doped screen-printed back contact silicon solar cells with an eff...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
AbstractWe present a universal passivation for both, phosphorus and boron doped surfaces of interdig...