We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal configuration, with one terminal at the front and two at the rear. We consider configurations in which the top cell has either the inverted or the same polarity as the bottom cell. Our goal is to minimize the optical losses, to compare the performance of both configurations and to determine the realistically achievable efficiency. Optical simulations show that if the hole-transporting material is in front of the perovskite, it gives rise to parasitic absorption losses. If it is behind the perovskite, these losses are avoided, however, at the cost of increased reflection losses. We systematically minimize these reflection losses. This increases th...
International audienceThe current climate and energy crisis urgently needs solar cells with efficien...
© 2018 The Royal Society of Chemistry. Perovskite-silicon tandem solar cells are potentially attract...
Mechanical stacking of a thin film perovskite-based solar cell on top of crystalline Si (cSi) solar ...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
We numerically maximize the achievable photocurrent density of planar perovskite silicon tandem sola...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Inorganic–organic hybrid perovskites offer wide optical absorption, long charge carrier diffusion le...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
We present a three terminal 3T tandem approachfor the interconnection of a perovskite top cell wit...
The current climate and energy crisis urgently needs solar cells with efficiencies above the 29% sin...
Successful integration of perovskite cell with silicon cell to form a tandem solar device has shown ...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
International audienceThe current climate and energy crisis urgently needs solar cells with efficien...
© 2018 The Royal Society of Chemistry. Perovskite-silicon tandem solar cells are potentially attract...
Mechanical stacking of a thin film perovskite-based solar cell on top of crystalline Si (cSi) solar ...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
We numerically maximize the achievable photocurrent density of planar perovskite silicon tandem sola...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Inorganic–organic hybrid perovskites offer wide optical absorption, long charge carrier diffusion le...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
We present a three terminal 3T tandem approachfor the interconnection of a perovskite top cell wit...
The current climate and energy crisis urgently needs solar cells with efficiencies above the 29% sin...
Successful integration of perovskite cell with silicon cell to form a tandem solar device has shown ...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
International audienceThe current climate and energy crisis urgently needs solar cells with efficien...
© 2018 The Royal Society of Chemistry. Perovskite-silicon tandem solar cells are potentially attract...
Mechanical stacking of a thin film perovskite-based solar cell on top of crystalline Si (cSi) solar ...