In this thesis, we present the development and characterization of novel approaches to carrier-selective passivating contacts for crystalline silicon (c-Si) solar cells. In our first approach, we benefit from a wide-bandgap material, namely mixed-phase silicon oxide (SiOx). High hydrogen dilution during the plasma-enhanced chemical vapor deposition of a SiOx layer leads to the growth of vertically oriented silicon filaments embedded in a silicon oxide matrix. The resulting mixed-phase material combines transparency and vertical conduction through the layer. We propose a layered contact structure starting with an ultra-thin chemically grown SiOx (~1.2 nm) at the c-Si wafer surface, followed by a phosphorus-doped bilayer of the mixed-phase Si...
Carrier selective passivating contacts (CSPC) have proven to effectively curtail the recombination l...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
The goal of this work is to develop a transparent, passivating and conductive contact for the light ...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
We present a p-type passivating rear contact that complies with integration into standard solar cell...
We present a novel passivating contact structure based on a nanostructured silicon-based layer. Trad...
Within the photovoltaic industry, a lot of research is done in order to minimize losses which are cr...
We present electron- and hole-selective passivating contacts based on wet-chemically grown interfaci...
AbstractWe describe the design, fabrication and results of passivated contacts to n-type silicon uti...
Silicon solar cells account for about 95% of the total photovoltaic market share. Poly-Si passivatin...
In this work we develop a rear emitter silicon solar cell integrating carrier-selective passivating ...
Carrier-selective passivating contacts (CSPCs) is now a popular contact structure that effectively p...
In this contribution, we present an electron selective passivating contact metallised with a low tem...
Carrier selective passivating contacts (CSPC) have proven to effectively curtail the recombination l...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
The goal of this work is to develop a transparent, passivating and conductive contact for the light ...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
We present a p-type passivating rear contact that complies with integration into standard solar cell...
We present a novel passivating contact structure based on a nanostructured silicon-based layer. Trad...
Within the photovoltaic industry, a lot of research is done in order to minimize losses which are cr...
We present electron- and hole-selective passivating contacts based on wet-chemically grown interfaci...
AbstractWe describe the design, fabrication and results of passivated contacts to n-type silicon uti...
Silicon solar cells account for about 95% of the total photovoltaic market share. Poly-Si passivatin...
In this work we develop a rear emitter silicon solar cell integrating carrier-selective passivating ...
Carrier-selective passivating contacts (CSPCs) is now a popular contact structure that effectively p...
In this contribution, we present an electron selective passivating contact metallised with a low tem...
Carrier selective passivating contacts (CSPC) have proven to effectively curtail the recombination l...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
The goal of this work is to develop a transparent, passivating and conductive contact for the light ...