Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si solar cells. Hole selective a-Si:H/MoOx/ITO front contact stacks were already successfully applied in such novel devices. However, for optimum device performance, further improvements are required: We evaluate the use of the high-work-function material WOX as a replacement for MoOx in an attempt to reduce optical absorption losses. In addition, we investigate the use of thin hydrogenated SiOX instead of a-Si:H, and the impact of the residual pressure for MoOx evaporation
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
The high work function metal oxides, tungsten oxide (WO. <inf>x</inf> ) and molybdenum oxide (MoO. <...
The applicability of molybdenum, tungsten and vanadium oxide as a hole contact for silicon wafer bas...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
Evaporated MoOx was investigated as hole contact for silicon solar cells. To improve understanding o...
Molybdenum oxide MoOX combines a high work function with broadband optical transparency. Sandwiche...
Reactive sputter deposited tungsten and molybdenum oxide (WOx, MoOx) thin films are tested for their...
Hole-collecting and buffer layers more transparent than amorphous silicon layers are regarded as one...
The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) cou...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
We present the feasibility of integrating substoichiometric molybdenum oxide (MoOx) as hole-selectiv...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
This letter examines the application of transparent MoOₓ (x < 3) films deposited by thermal evaporat...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
The high work function metal oxides, tungsten oxide (WO. <inf>x</inf> ) and molybdenum oxide (MoO. <...
The applicability of molybdenum, tungsten and vanadium oxide as a hole contact for silicon wafer bas...
Abstract- Efficient carrier selective contacts and excellent surface passivation are essential for s...
Evaporated MoOx was investigated as hole contact for silicon solar cells. To improve understanding o...
Molybdenum oxide MoOX combines a high work function with broadband optical transparency. Sandwiche...
Reactive sputter deposited tungsten and molybdenum oxide (WOx, MoOx) thin films are tested for their...
Hole-collecting and buffer layers more transparent than amorphous silicon layers are regarded as one...
The fabrication of window layers more transparent than those based on amorphous silicon (a-Si:H) cou...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
We present the feasibility of integrating substoichiometric molybdenum oxide (MoOx) as hole-selectiv...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
This letter examines the application of transparent MoOₓ (x < 3) films deposited by thermal evaporat...
We recently showed that silicon heterojunction solar cell with MoOx-based hole-selective contact cou...
Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiche...
The high work function metal oxides, tungsten oxide (WO. <inf>x</inf> ) and molybdenum oxide (MoO. <...
The applicability of molybdenum, tungsten and vanadium oxide as a hole contact for silicon wafer bas...