AbstractFor an improved solar cell performance rear side passivation and local contacts in combination with a laser diffused selective emitter were developed and cell efficiencies up to 19.5% were reached. Several fundamental physical impacts of major importance, such as the light trapping behaviour because of specific surface preparations, the resulting passivation performance, the interaction of emitter and rear surface recombination currents, were investi-gated. In the first test runs in a production environment average solar cell efficiencies of 18.6% and best cell efficiencies of 19.0% were successfully achieved under non-adapted production conditions
High-efficiency solar cells have to be designed carefully in order to minimize all possible losses. ...
We present a comparison of solar cells featuring homogeneous and selective emitters on devices with ...
Selective emitter solar cells can provide a significant increase in conversion efficiency. However c...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
To enable photovoltaics (PV) to become a leading source of energy in a low-carbon future, the cost o...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
One of the most promising methods to improve the efficiency of crystalline solar cells is the implem...
From today's viewpoint future solar cells will be thinner, of higher efficiency and produced in grea...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
n-Type solar cells with passivated rear surface and point contacts have been proven to have an enorm...
In the industrial fabrication of silicon solar cells, lowly doped emitters offer an opportunity to i...
AbstractLaser Firing Contact (LFC) and Laser Doping (LD) have become potential alternatives to the A...
Current industrial monocrystalline Cz Si solar cells based on screen-printing technology for contact...
To overcome limitations in efficiency originating from the front side of a crystalline silicon solar...
High-efficiency solar cells have to be designed carefully in order to minimize all possible losses. ...
We present a comparison of solar cells featuring homogeneous and selective emitters on devices with ...
Selective emitter solar cells can provide a significant increase in conversion efficiency. However c...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
To enable photovoltaics (PV) to become a leading source of energy in a low-carbon future, the cost o...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
One of the most promising methods to improve the efficiency of crystalline solar cells is the implem...
From today's viewpoint future solar cells will be thinner, of higher efficiency and produced in grea...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
n-Type solar cells with passivated rear surface and point contacts have been proven to have an enorm...
In the industrial fabrication of silicon solar cells, lowly doped emitters offer an opportunity to i...
AbstractLaser Firing Contact (LFC) and Laser Doping (LD) have become potential alternatives to the A...
Current industrial monocrystalline Cz Si solar cells based on screen-printing technology for contact...
To overcome limitations in efficiency originating from the front side of a crystalline silicon solar...
High-efficiency solar cells have to be designed carefully in order to minimize all possible losses. ...
We present a comparison of solar cells featuring homogeneous and selective emitters on devices with ...
Selective emitter solar cells can provide a significant increase in conversion efficiency. However c...