In a monolithic perovskite/c-Si tandem device, the perovskite top cell has to be deposited onto a flat c-Si bottom cell without anti-reflective front side texture, to avoid fabrication issues. We use optical simulations to analyze the reflection losses that this induces. We then systematically minimize these losses by introducing surface textures in combination with a so-called burial layer to keep the perovskite top cell flat. Optical simulations show that, even with a flat top cell, the monolithic perovskite/c-Si tandem device can reach a matched photocurrent density as high as 19.57 mA/cm2.Photovoltaic Materials and DevicesElectrical Sustainable Energ
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
We report 26.2% efficient monolithic perovskite/silicon tandem single-cell solar modules with a shor...
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...
<p>In a monolithic perovskite/c-Si tandem device, the perovskite top cell has to be deposited onto a...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
For high efficiency monolithic perovskite silicon tandem solar cells, we develop low-temperature pro...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Coupling perovskite and silicon solar cells in a tandem configuration is considered an attractive me...
We investigate gentle front side textures for perovskite/silicon tandem solar cells. These textures ...
Efficient light management in monolithic perovskite/silicon tandem solar cells is one of the prerequ...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Tandem solar cells combining silicon and perovskite absorbers have the potential to outperform state...
Tandem solar cells combining silicon and perovskite absorbers have the potential to outperform stat...
Perovskite-on-silicon tandem solar cells show potential to reach > 30% conversion efficiency, but re...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
We report 26.2% efficient monolithic perovskite/silicon tandem single-cell solar modules with a shor...
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...
<p>In a monolithic perovskite/c-Si tandem device, the perovskite top cell has to be deposited onto a...
Perovskite/silicon tandem solar cells are regarded as a promising candidate to surpass current effic...
For high efficiency monolithic perovskite silicon tandem solar cells, we develop low-temperature pro...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Coupling perovskite and silicon solar cells in a tandem configuration is considered an attractive me...
We investigate gentle front side textures for perovskite/silicon tandem solar cells. These textures ...
Efficient light management in monolithic perovskite/silicon tandem solar cells is one of the prerequ...
Perovskite/silicon 2-terminal tandem cells have made significant advances towards >25% efficiency. D...
Tandem solar cells combining silicon and perovskite absorbers have the potential to outperform state...
Tandem solar cells combining silicon and perovskite absorbers have the potential to outperform stat...
Perovskite-on-silicon tandem solar cells show potential to reach > 30% conversion efficiency, but re...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
We report 26.2% efficient monolithic perovskite/silicon tandem single-cell solar modules with a shor...
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...