Monolithic perovskite/c-Si tandem solar cells have the potential to exceed the Shockley-Queisser limit for single junction solar cells. However, reflection losses at internal interfaces play a crucial role for the overall efficiency of the tandem devices. Significant reflection losses are caused by the charge selective contacts which have a significantly lower refractive index compared to the absorber materials. Here, we present an approach to overcome a significant part of these reflection losses by introducing a multilayer stack between the top and bottom cell which shows spectrally selective transmission/reflection behavior. The layer stack is designed and optimized by optical simulations using transfer matrix method and a genetic algori...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
Organic-inorganic hybrid perovskite materials are excellent candidates as light absorbers in tandem ...
Perovskite/silicon tandem solar cell (TSC) is a promising strategy to receive high power conversion ...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Perovskite/silicon tandem solar cells are attractive for their potential for boosting cell efficienc...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Perovskite silicon tandem solar cells are attractive for their potential for boosting cell efficien...
In a monolithic perovskite/c-Si tandem device, the perovskite top cell has to be deposited onto a fl...
Mechanical stacking of a thin film perovskite-based solar cell on top of crystalline Si (cSi) solar ...
The use of several layers of different materials, taking advantage of their complementary bandgap en...
Solar energy is now dealing with the challenge of overcoming the Shockley−Queisser limit of si...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
We numerically maximize the achievable photocurrent density of planar perovskite silicon tandem sola...
Combining inorganic organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
Organic-inorganic hybrid perovskite materials are excellent candidates as light absorbers in tandem ...
Perovskite/silicon tandem solar cell (TSC) is a promising strategy to receive high power conversion ...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Perovskite/silicon tandem solar cells are attractive for their potential for boosting cell efficienc...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Perovskite silicon tandem solar cells are attractive for their potential for boosting cell efficien...
In a monolithic perovskite/c-Si tandem device, the perovskite top cell has to be deposited onto a fl...
Mechanical stacking of a thin film perovskite-based solar cell on top of crystalline Si (cSi) solar ...
The use of several layers of different materials, taking advantage of their complementary bandgap en...
Solar energy is now dealing with the challenge of overcoming the Shockley−Queisser limit of si...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
We numerically maximize the achievable photocurrent density of planar perovskite silicon tandem sola...
Combining inorganic organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
Organic-inorganic hybrid perovskite materials are excellent candidates as light absorbers in tandem ...
Perovskite/silicon tandem solar cell (TSC) is a promising strategy to receive high power conversion ...