Perovskite solar cells based on an all printable mesoporous stack, made of overlapping titania, zirconia, and carbon layers, represent a promising device architecture for both simple, low‐cost manufacture, and outstanding stability. Here a breakthrough in the upscaling of this technology is reported: Screen printed modules on A4 sized conductive glass substrates, delivering power conversion efficiency (PCE) ranging from 3 to 5% at 1 sun on an unprecedented 198 cm2 active area. An increase in the PCE, due to higher VOC and fill factor, is demonstrated by patterning the TiO2 blocking layer. Furthermore, an unexpected increase of the performance is observed over time, while storing the modules in the dark, unencapsulated, at ambient conditions...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...
Perovskite solar cells represent a new class of photovoltaic devices that, in only a decade, has alr...
Halide Perovskite photovoltaic technology can be scaled to large area modules and panels using print...
The rapid development of organic-inorganic hybrid perovskite solar cells has resulted in laboratory-...
The power conversion efficiencies (PCEs) of Perovskite solar cells (PSCs) have seen significant perf...
Hole-transporter-free perovskite solar cells carrying a carbon back contact electrode provide the po...
Perovskite photovoltaics, seen as a viable competitor to the familiar silicon-based photovoltaics on...
Perovskite solar cells have seen dramatic improvements in terms of device efficiency. In a short spa...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
Screen printing technology is a cost-effective method capable of mass production. Screen printable c...
Perovskite photovoltaic (PV) technology toward commercialization relies on high power conversion eff...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...
Perovskite solar cells represent a new class of photovoltaic devices that, in only a decade, has alr...
Halide Perovskite photovoltaic technology can be scaled to large area modules and panels using print...
The rapid development of organic-inorganic hybrid perovskite solar cells has resulted in laboratory-...
The power conversion efficiencies (PCEs) of Perovskite solar cells (PSCs) have seen significant perf...
Hole-transporter-free perovskite solar cells carrying a carbon back contact electrode provide the po...
Perovskite photovoltaics, seen as a viable competitor to the familiar silicon-based photovoltaics on...
Perovskite solar cells have seen dramatic improvements in terms of device efficiency. In a short spa...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
Screen printing technology is a cost-effective method capable of mass production. Screen printable c...
Perovskite photovoltaic (PV) technology toward commercialization relies on high power conversion eff...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
Today poly and mono-crystalline silicon dominate the photovoltaic (PV) markets for outdoor applicati...