In this contribution, we present an electron selective passivating contact metallised with a low temperature process to target front side applications in crystalline silicon (c-Si) solar cells. In addition to an interfacial silicon oxide (SiOx) and an in-situ phosphorous doped micro-crystalline silicon (μc-Si(n)) layer, it comprises an ultra-thin indium tin oxide (ITO) layer of 15 nm for lateral conductivity and a hydrogen rich silicon nitride (SiNx:H) layer which serves as hydrogen (H) reservoir and as anti-reflection coating. We use one single thermal treatment for 30 min at 350 °C to sinter the screen-printed paste, to recover sputtering damage induced during ITO deposition, and to diffuse hydrogen from the SiNx:H layer towards the c-Si/...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
We present a p-type passivating rear contact that complies with integration into standard solar cell...
Passivating contacts are key enablers for high efficiency c-Si solar cells. Here, we present our lat...
In this work we develop a rear emitter silicon solar cell integrating carrier-selective passivating ...
In this work, we present the development of passivating contacts based on thin interfacial oxide/dop...
In this thesis, we present the development and characterization of novel approaches to carrier-selec...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
Silicon solar cells account for about 95% of the total photovoltaic market share. Poly-Si passivatin...
Carrier selective passivating contacts (CSPC) have proven to effectively curtail the recombination l...
We present a detailed optimization of a hole selective rear contact for p-type crystalline silicon s...
Carrier selective contacts (CSCs) have been proposed to replace the conventional p-n junction becaus...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
We present electron- and hole-selective passivating contacts based on wet-chemically grown interfaci...
We present an electron selective passivating contact based on a tunneling SiOx capped with a phospho...
Ion-implanted poly-crystalline silicon (poly-Si), in combination with a tunnel oxide layer, is inves...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
We present a p-type passivating rear contact that complies with integration into standard solar cell...
Passivating contacts are key enablers for high efficiency c-Si solar cells. Here, we present our lat...
In this work we develop a rear emitter silicon solar cell integrating carrier-selective passivating ...
In this work, we present the development of passivating contacts based on thin interfacial oxide/dop...
In this thesis, we present the development and characterization of novel approaches to carrier-selec...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
Silicon solar cells account for about 95% of the total photovoltaic market share. Poly-Si passivatin...
Carrier selective passivating contacts (CSPC) have proven to effectively curtail the recombination l...
We present a detailed optimization of a hole selective rear contact for p-type crystalline silicon s...
Carrier selective contacts (CSCs) have been proposed to replace the conventional p-n junction becaus...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
We present electron- and hole-selective passivating contacts based on wet-chemically grown interfaci...
We present an electron selective passivating contact based on a tunneling SiOx capped with a phospho...
Ion-implanted poly-crystalline silicon (poly-Si), in combination with a tunnel oxide layer, is inves...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
We present a p-type passivating rear contact that complies with integration into standard solar cell...
Passivating contacts are key enablers for high efficiency c-Si solar cells. Here, we present our lat...