Multijunction solar cells can overcome the fundamental efficiency limits of single-junction devices. The bandgap tunability of metal halide perovskite solar cells renders them attractive for multijunction architectures(1). Combinations with silicon and copper indium gallium selenide (CIGS), as well as all-perovskite tandem cells, have been reported(2-5). Meanwhile, narrow-gap non-fullerene acceptors have unlocked skyrocketing efficiencies for organic solar cells(6,7). Organic and perovskite semiconductors are an attractive combination, sharing similar processing technologies. Currently, perovskite-organic tandems show subpar efficiencies and are limited by the low open-circuit voltage (V-oc) of wide-gap perovskite cells(8) and losses introd...
A perovskite/CIGS tandem configuration is an attractive and viable approach to achieve an ultra-high...
Multi-junction solar photovoltaics are proven to deliver the highest performance of any solar ce...
Abstract Monolithic perovskite solar cells (PSCs) and small‐bandgap organic photovoltaics (OPVs) int...
Multijunction solar cells can overcome the fundamental efficiency limits of single-junction devices....
Organic solar cells (OSCs) based on polymer donor and non-fullerene acceptor achieve power conversio...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite ab...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Recently, emerging third-generation photovoltaic technologies have shown rapid progress in device pe...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Up to now, multijunction cell design is the only successful way demonstrated to overcome the Shockle...
Multi-junction (tandem) solar cells (TSCs) consisting of multiple light absorbers with considerably ...
Multi-junction tandem design has been proven to be an effective means to further improve the efficie...
Photovoltaics based on organic–inorganic as well as all inorganic semiconducting perovskites have em...
Owing to their high efficiency, low-cost solution-processability, and tunable bandgap, perovskite so...
A perovskite/CIGS tandem configuration is an attractive and viable approach to achieve an ultra-high...
Multi-junction solar photovoltaics are proven to deliver the highest performance of any solar ce...
Abstract Monolithic perovskite solar cells (PSCs) and small‐bandgap organic photovoltaics (OPVs) int...
Multijunction solar cells can overcome the fundamental efficiency limits of single-junction devices....
Organic solar cells (OSCs) based on polymer donor and non-fullerene acceptor achieve power conversio...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite ab...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Recently, emerging third-generation photovoltaic technologies have shown rapid progress in device pe...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Up to now, multijunction cell design is the only successful way demonstrated to overcome the Shockle...
Multi-junction (tandem) solar cells (TSCs) consisting of multiple light absorbers with considerably ...
Multi-junction tandem design has been proven to be an effective means to further improve the efficie...
Photovoltaics based on organic–inorganic as well as all inorganic semiconducting perovskites have em...
Owing to their high efficiency, low-cost solution-processability, and tunable bandgap, perovskite so...
A perovskite/CIGS tandem configuration is an attractive and viable approach to achieve an ultra-high...
Multi-junction solar photovoltaics are proven to deliver the highest performance of any solar ce...
Abstract Monolithic perovskite solar cells (PSCs) and small‐bandgap organic photovoltaics (OPVs) int...