Efficient monolithic perovskite/perovskite tandem solar cells are fabricated using two perovskite absorbers with complementary bandgaps. By employing doped organic semiconductors, an efficient and selective extraction of the charge carriers is ensured. This study demonstrates perovskite/perovskite tandem cells delivering a maximum efficiency of 18%, highlighting the potential of vacuum‐deposited multilayer structures in overcoming the efficiency of single‐junction perovskite devices
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...
Tandem devices combining perovskite and silicon solar cells are promising candidates to achieve powe...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Combining inorganic organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
Perovskite-based multijunction solar cells are a potentially cost-effective technology that can help...
Tandem solar cells that pair silicon with a metal halide perovskite are a promising option for surpa...
Tandem solar cells that pair silicon with a metal halide perovskite are a promising option for surpa...
Nowadays the photovoltaics market is dominated by crystalline silicon solar cells, which are approac...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Metal halide perovskites show great promise to enable highly efficient and low cost tandem solar cel...
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...
Tandem devices combining perovskite and silicon solar cells are promising candidates to achieve powe...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Combining inorganic organic perovskites and crystalline silicon into a monolithic tandem solar cell ...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
Perovskite-based multijunction solar cells are a potentially cost-effective technology that can help...
Tandem solar cells that pair silicon with a metal halide perovskite are a promising option for surpa...
Tandem solar cells that pair silicon with a metal halide perovskite are a promising option for surpa...
Nowadays the photovoltaics market is dominated by crystalline silicon solar cells, which are approac...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
We demonstrate a monolithic tandem solar cell by sequentially depositing a higher-bandgap (2.3 eV) C...
Metal halide perovskites show great promise to enable highly efficient and low cost tandem solar cel...
Perovskite silicon tandem solar cells are the most promising concept for a future photovoltaic techn...
Tandem devices combining perovskite and silicon solar cells are promising candidates to achieve powe...
Combining inorganic-organic perovskites and crystalline silicon into a monolithic tandem solar cell ...