Transition metal oxides (TMOs) have recently been proved to efficiently serve as hole-selective contacts in crystalline silicon (c-Si) heterojunction solar cells. In the present work, two TMO/c-Si heterojunctions are explored using MoO3 (reference) and V2O5 as an alternative candidate. It has been found that V2O5 devices present larger (16% improvement) power conversion efficiency mainly due to their higher open-circuit voltage. While V2O5/c-Si devices with textured front surfaces exhibit larger short-circuit currents, it is also observed that flat solar cell architectures allow for passivation of the V2O5/n-Si interface, giving significant carrier lifetimes of 200 ms (equivalent to a surface recombination velocity of Seff ~140 cm s...
© 2019 IEEE. For the crystalline silicon (c-Si) heterojunction (HJ) solar cell with the conventional...
By 2030, Singapore aims to power 350,000 homes using solar energy [1]. As the world continues to shi...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
Transition metal oxides (TMOs) have recently been proved to efficiently serve as hole-selective cont...
Transition metal oxides (TMOs) have recently been proved to efficiently serve as hole-selective con...
During the last decade, transition metal oxides have been actively investigated as hole- and electro...
During the last decade, transition metal oxides have been actively investigated as hole- and electro...
Transition metal oxides (TMOs) have recently demonstrated to be a good alternative to boron/phosphor...
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...
AbstractIn this work, a back junction solar cell design is explored for n-type crystalline silicon b...
Dopant-free carrier-selective transition metal oxide (TMO) contacts offer unique electrical properti...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
Transition metal oxides (TMOs) are of increasing importance for many applications reaching from thin...
Transition metal oxides (TMO) are commonly used as hole selective contacts on n-type silicon (Si) to...
© 2019 IEEE. For the crystalline silicon (c-Si) heterojunction (HJ) solar cell with the conventional...
By 2030, Singapore aims to power 350,000 homes using solar energy [1]. As the world continues to shi...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...
Transition metal oxides (TMOs) have recently been proved to efficiently serve as hole-selective cont...
Transition metal oxides (TMOs) have recently been proved to efficiently serve as hole-selective con...
During the last decade, transition metal oxides have been actively investigated as hole- and electro...
During the last decade, transition metal oxides have been actively investigated as hole- and electro...
Transition metal oxides (TMOs) have recently demonstrated to be a good alternative to boron/phosphor...
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...
AbstractIn this work, a back junction solar cell design is explored for n-type crystalline silicon b...
Dopant-free carrier-selective transition metal oxide (TMO) contacts offer unique electrical properti...
Although front and back contact silicon heterojunction solar cells exhibit promising external parame...
Transition metal oxides (TMOs) are of increasing importance for many applications reaching from thin...
Transition metal oxides (TMO) are commonly used as hole selective contacts on n-type silicon (Si) to...
© 2019 IEEE. For the crystalline silicon (c-Si) heterojunction (HJ) solar cell with the conventional...
By 2030, Singapore aims to power 350,000 homes using solar energy [1]. As the world continues to shi...
Environmental challenges impose a rapid energy transition. The renewable power capacity is expected ...