In high-efficiency silicon solar cells featuring carrier-selective passivating contacts based on ultrathin SiOx/poly-Si, the appropriate implementation of transparent conductive oxide (TCO) layers is of vital importance. Considerable deterioration in passivation quality occurs for thin poly-Si-based devices owing to the sputtering damage during TCO deposition. Curing treatment at temperatures above 350 °C can recover such degradation, whereas the opto-electrical properties of the TCO are affected as well, and the carrier transport at the poly-Si/TCO contact is widely reported to degrade severely in such a procedure. Here, we propose straightforward approaches, post-deposition annealing at 400 °C in nitrogen, hydrogen, or air ambience, are p...
The front transparent conductive oxide layer is a source of significant optical and electrical losse...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Achieving high efficiency solar cells becomes more interesting in order to make solar cell become co...
Broadband transparent conductive oxide layers with high electron mobility (μe) are essential to furt...
This work addresses the development of transparent conductive oxides (TCOs) for Si solar cells featu...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
In recent years, the incorporation of hydrogen into indium and zinc oxide based TCOs has been recogn...
International audiencePolysilicon (poly-Si) based passivating contacts are promising to improve sili...
In this thesis, we present the development and characterization of novel approaches to carrier-selec...
Transparent conductive oxides play an important role as contact layers in various opto-electronic de...
International audienceThis work presents the development and the application of innovative and susta...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
The front transparent conductive oxide layer is a source of significant optical and electrical losse...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Achieving high efficiency solar cells becomes more interesting in order to make solar cell become co...
Broadband transparent conductive oxide layers with high electron mobility (μe) are essential to furt...
This work addresses the development of transparent conductive oxides (TCOs) for Si solar cells featu...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
In recent years, the incorporation of hydrogen into indium and zinc oxide based TCOs has been recogn...
International audiencePolysilicon (poly-Si) based passivating contacts are promising to improve sili...
In this thesis, we present the development and characterization of novel approaches to carrier-selec...
Transparent conductive oxides play an important role as contact layers in various opto-electronic de...
International audienceThis work presents the development and the application of innovative and susta...
In this work, we develop SiOx/poly-Si carrier-selective contacts grown by low-pressure chemical vapo...
The front transparent conductive oxide layer is a source of significant optical and electrical losse...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Achieving high efficiency solar cells becomes more interesting in order to make solar cell become co...