Perovskite material with a bandgap of 1.7-1.8 eV is highly desirable for the top cell in a tandem configuration with a lower bandgap bottom cell, such as a silicon cell. This can be achieved by alloying iodide and bromide anions, but light-induced phase-segregation phenomena are often observed in perovskite films of this kind, with implications for solar cell efficiency. Here, we investigate light-induced phase segregation inside quadruple-cation perovskite material in a complete cell structure and find that the magnitude of this phenomenon is dependent on the operating condition of the solar cell. Under short-circuit and even maximum power point conditions, phase segregation is found to be negligible compared to the magnitude of segregatio...
The tunable bandgap of metal-halide perovskites has opened up the possibility of tandem solar cells ...
International audienceMixed-halide based hybrid perovskite semiconductors have attracted tremendous ...
Thin-film solar cells based on hybrid lead halide perovskites have achieved certified power conversi...
Perovskite material with a bandgap of 1.7–1.8 eV is highly desirable for the top cell in a tandem co...
Mixed halide hybrid perovskites are of significant interest because their bandgap can be tuned as a ...
The most important obstacle to widespread use of perovskite solar cells is their poor stability unde...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Mixed-halide perovskites are essential for use in all-perovskite or perovskite–silicon tandem solar ...
Metal halide perovskites have garnered a great deal of interest over the last few years due to their...
Mixed cation strategy greatly benefits the enhancement of device performance and chemical stability....
Photoinduced halide ion segregation in mixed halide perovskites can introduce a detrimental effect o...
The strategy of mixing cations and halides in hybrid organic lead halide perovskites has recently be...
Wide-bandgap perovskite solar cells (WBG PSCs) have gained attention as promising tandem partners fo...
An understanding of the factors driving halide segregation in lead mixed-halide perovskites is requi...
The tunable bandgap of metal-halide perovskites has opened up the possibility of tandem solar cells ...
International audienceMixed-halide based hybrid perovskite semiconductors have attracted tremendous ...
Thin-film solar cells based on hybrid lead halide perovskites have achieved certified power conversi...
Perovskite material with a bandgap of 1.7–1.8 eV is highly desirable for the top cell in a tandem co...
Mixed halide hybrid perovskites are of significant interest because their bandgap can be tuned as a ...
The most important obstacle to widespread use of perovskite solar cells is their poor stability unde...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Mixed-halide perovskites are essential for use in all-perovskite or perovskite–silicon tandem solar ...
Metal halide perovskites have garnered a great deal of interest over the last few years due to their...
Mixed cation strategy greatly benefits the enhancement of device performance and chemical stability....
Photoinduced halide ion segregation in mixed halide perovskites can introduce a detrimental effect o...
The strategy of mixing cations and halides in hybrid organic lead halide perovskites has recently be...
Wide-bandgap perovskite solar cells (WBG PSCs) have gained attention as promising tandem partners fo...
An understanding of the factors driving halide segregation in lead mixed-halide perovskites is requi...
The tunable bandgap of metal-halide perovskites has opened up the possibility of tandem solar cells ...
International audienceMixed-halide based hybrid perovskite semiconductors have attracted tremendous ...
Thin-film solar cells based on hybrid lead halide perovskites have achieved certified power conversi...