The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) could be a key factor to enhance the efficiency of heterojunction (HJ) solar cells. In this work amorphous hydrogenated silicon oxide (a-SiOx:H) as a transparent passivating layer and substoichiometric tungsten oxide (WOx), with its wide band gap and high work function, are proposed to form efficient hole-selective contacts on silicon-based HJ solar cells. A comparison is made between WOx films grown by RF sputtering and by thermal evaporation
In silicon heterojunction (SHJ) solar cells, one factor limiting efficiency is "parasitic absorption...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evo...
Emitter and buffer layers more transparent than amorphous Silicon is one of the improvement needed i...
Hole-collecting and buffer layers more transparent than amorphous silicon layers are regarded as one...
Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si s...
The dopant-related issues are amongst the major performance bottleneck in crystalline silicon solar ...
Reactively sputtered tungsten oxide WOx was investigated as hole contact on n type crystalline sil...
Tungsten oxide WOx can be incorporated into amorphous crystalline silicon heterojunction solar cel...
The achievable current in a silicon based heterojunction solar cell is a limit in its conversion eff...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
The applicability of molybdenum, tungsten and vanadium oxide as a hole contact for silicon wafer bas...
Reactive sputter deposited tungsten and molybdenum oxide (WOx, MoOx) thin films are tested for their...
© 2019 IEEE. For the crystalline silicon (c-Si) heterojunction (HJ) solar cell with the conventional...
Silicon heterojunction technology (HJT) enables record efficiencies for silicon-based solar cells [1...
In silicon heterojunction (SHJ) solar cells, one factor limiting efficiency is "parasitic absorption...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evo...
Emitter and buffer layers more transparent than amorphous Silicon is one of the improvement needed i...
Hole-collecting and buffer layers more transparent than amorphous silicon layers are regarded as one...
Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si s...
The dopant-related issues are amongst the major performance bottleneck in crystalline silicon solar ...
Reactively sputtered tungsten oxide WOx was investigated as hole contact on n type crystalline sil...
Tungsten oxide WOx can be incorporated into amorphous crystalline silicon heterojunction solar cel...
The achievable current in a silicon based heterojunction solar cell is a limit in its conversion eff...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
The applicability of molybdenum, tungsten and vanadium oxide as a hole contact for silicon wafer bas...
Reactive sputter deposited tungsten and molybdenum oxide (WOx, MoOx) thin films are tested for their...
© 2019 IEEE. For the crystalline silicon (c-Si) heterojunction (HJ) solar cell with the conventional...
Silicon heterojunction technology (HJT) enables record efficiencies for silicon-based solar cells [1...
In silicon heterojunction (SHJ) solar cells, one factor limiting efficiency is "parasitic absorption...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evo...