peer reviewedThin film tandem solar cells provide a promising approach to achieve high efficiencies. These tandem cells require at least a bottom low bandgap and an upper high bandgap solar cell. In this contribution, 2 high‐performance Cu(In,Ga)Se2 cells with bandgaps as low as 1.04 and 1.07 eV are presented. These cells have shown certified efficiencies of 15.7% and 16.6% respectively. Measuring these cells under a 780‐nm longpass filter, corresponding to the bandgap of a typical top cell in tandem applications (1.57 eV), they achieved efficiencies of 7.9% and 8.3%. Admittance measurements showed no recombination active deep defects. One additional high‐performance CuInSe2 thin film solar cell with bandgap of 0.95 eV and efficienc...
Perovskite based tandem solar cells can increase the power conversion efficiency PCE of convention...
AbstractOptical simulations of 4-terminal hybrid tandem modulescombining high-efficiency crystalline...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Thin film tandem solar cells provide a promising approach to achieve high efficiencies. These tandem...
Thin film tandem solar cells provide a promising approach to achieve high efficiencies. These tandem...
Mechanically stacked, high efficiency, lightweight, and radiation resistant photovoltaic cells based...
Multijunction thin film solar cells utilizing GaAs and CuInSe2 as semiconductor absorbers are rapidl...
Multi-junction solar cells show the highest photovoltaic energy conversion efficiencies, but the cur...
Optical simulations of 4-terminal hybrid tandem modulescombining high-efficiency crystalline silicon...
The AstroPower self-supporting, transparent AlGaAs top solar cell can be stacked upon any well-devel...
Monolithic perovskite silicon tandem solar cells recently surpass the efficiency of silicon single j...
Wide-bandgap perovskite solar cells (PSCs) with optimal bandgap (E$_{g}$) and high power conversion ...
Preliminary results are encouraging for the achievement of high conversion efficiencies using a GaAs...
The tandem cells consisting of GaAs single crystal and CuInSe2 polycrystalline thin films are being ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Perovskite based tandem solar cells can increase the power conversion efficiency PCE of convention...
AbstractOptical simulations of 4-terminal hybrid tandem modulescombining high-efficiency crystalline...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Thin film tandem solar cells provide a promising approach to achieve high efficiencies. These tandem...
Thin film tandem solar cells provide a promising approach to achieve high efficiencies. These tandem...
Mechanically stacked, high efficiency, lightweight, and radiation resistant photovoltaic cells based...
Multijunction thin film solar cells utilizing GaAs and CuInSe2 as semiconductor absorbers are rapidl...
Multi-junction solar cells show the highest photovoltaic energy conversion efficiencies, but the cur...
Optical simulations of 4-terminal hybrid tandem modulescombining high-efficiency crystalline silicon...
The AstroPower self-supporting, transparent AlGaAs top solar cell can be stacked upon any well-devel...
Monolithic perovskite silicon tandem solar cells recently surpass the efficiency of silicon single j...
Wide-bandgap perovskite solar cells (PSCs) with optimal bandgap (E$_{g}$) and high power conversion ...
Preliminary results are encouraging for the achievement of high conversion efficiencies using a GaAs...
The tandem cells consisting of GaAs single crystal and CuInSe2 polycrystalline thin films are being ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Perovskite based tandem solar cells can increase the power conversion efficiency PCE of convention...
AbstractOptical simulations of 4-terminal hybrid tandem modulescombining high-efficiency crystalline...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...