Hole-collecting and buffer layers more transparent than amorphous silicon layers are regarded as one of the possible improvements needed in amorphous/crystalline silicon heterojunctions to help reach the limit efficiency of silicon-based solar cells. Recent studies have demonstrated the suitability of sub-stoichiometric molybdenum oxide (MoOx) as hole-extracting layer in heterojunction solar cells based on n-type crystalline silicon. However, up to now MoOx has mainly been used in combination with amorphous silicon, so limiting its potential as a transparent emitter. This work examines a hole-selective contact based on the combination of a passivating hydrogenated amorphous silicon oxide (a-SiOx:H) and MoOx. The use of these two high-band g...
We present the feasibility of integrating substoichiometric molybdenum oxide (MoOx) as hole-selectiv...
The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) cou...
Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si s...
Emitter and buffer layers more transparent than amorphous Silicon is one of the improvement needed i...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
Electron beam (E-beam) deposited molybdenum oxide (MoOx) has been investigated for its potential to ...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
Molybdenum oxide MoOX combines a high work function with broadband optical transparency. Sandwiche...
Copyright © Materials Research Society 2016. An experimental investigation to verify the suitability...
Thin films of transition metal oxides such as molybdenum oxide (MoOx) are attractive for application...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evo...
We present the feasibility of integrating substoichiometric molybdenum oxide (MoOx) as hole-selectiv...
The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) cou...
Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si s...
Emitter and buffer layers more transparent than amorphous Silicon is one of the improvement needed i...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
Electron beam (E-beam) deposited molybdenum oxide (MoOx) has been investigated for its potential to ...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
Molybdenum oxide MoOX combines a high work function with broadband optical transparency. Sandwiche...
Copyright © Materials Research Society 2016. An experimental investigation to verify the suitability...
Thin films of transition metal oxides such as molybdenum oxide (MoOx) are attractive for application...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evo...
We present the feasibility of integrating substoichiometric molybdenum oxide (MoOx) as hole-selectiv...
The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) cou...
Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si s...