Multi-junction (tandem) solar cells (TSCs) consisting of multiple light absorbers with considerably different band gaps show great potential in breaking the Shockley–Queisser (S–Q) efficiency limit of a single junction solar cell by absorbing light in a broader range of wavelengths. Perovskite solar cells (PSCs) are ideal candidates for TSCs due to their tunable band gaps, high PCE up to 25.2%, and easy fabrication. PSCs with high PCEs are typically fabricated via a low temperature solution method, which are easy to combine with many other types of solar cells like silicon (Si), copper indium gallium selenide (CIGS), narrow band gap PSCs, dye-sensitized, organic, and quantum dot solar cells. As a matter of fact, perovskite TSCs have stimula...
Tandem solar cells (SCs) based on perovskite and silicon represent an exciting possibility for a bre...
Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite ab...
Solar cells for electricity generation have been widely applied. However, most solar cells can only ...
Progress made in perovskite solar cells (PSCs) in tandem with silicon, thin films, and organic solar...
The large light absorption coefficient, long carrier diffusion length, and high defect tolerance ena...
Multi-junction tandem design has been proven to be an effective means to further improve the efficie...
Up to now, multijunction cell design is the only successful way demonstrated to overcome the Shockle...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
Perovskite solar cells (PSCs) offer rapid increase in the power conversion efficiency (PCE) and low ...
Multi-junction solar photovoltaics are proven to deliver the highest performance of any solar ce...
Owing to their high efficiency, low-cost solution-processability, and tunable bandgap, perovskite so...
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...
We demonstrate four-and two-terminal perovskite-perovskite tandem solar cells with ideally matched b...
Tandem solar cells (SCs) based on perovskite and silicon represent an exciting possibility for a bre...
Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite ab...
Solar cells for electricity generation have been widely applied. However, most solar cells can only ...
Progress made in perovskite solar cells (PSCs) in tandem with silicon, thin films, and organic solar...
The large light absorption coefficient, long carrier diffusion length, and high defect tolerance ena...
Multi-junction tandem design has been proven to be an effective means to further improve the efficie...
Up to now, multijunction cell design is the only successful way demonstrated to overcome the Shockle...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
Perovskite solar cells (PSCs) offer rapid increase in the power conversion efficiency (PCE) and low ...
Multi-junction solar photovoltaics are proven to deliver the highest performance of any solar ce...
Owing to their high efficiency, low-cost solution-processability, and tunable bandgap, perovskite so...
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...
We demonstrate four-and two-terminal perovskite-perovskite tandem solar cells with ideally matched b...
Tandem solar cells (SCs) based on perovskite and silicon represent an exciting possibility for a bre...
Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite ab...
Solar cells for electricity generation have been widely applied. However, most solar cells can only ...