A mixed-cation lead mixed-halide perovskite absorber for tandem solar cells
Смешаннокатионный смешанногалогенидный свинцовый перовскитовый поглотитель для тандемных солнечных элементов
2016-01-07
SCID: 54.1/aw8aj7vk
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mixed-cation perovskitemixed-halide perovskitephotostabilitysilicon-perovskite tandemtandem solar cells
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Abstract (AI)
Metal halide perovskite photovoltaic cells could potentially boost the efficiency of commercial silicon photovoltaic modules from ∼20 toward 30% when used in tandem architectures. An optimum perovskite cell optical band gap of ~1.75 electron volts (eV) can be achieved by varying halide composition, but to date, such materials have had poor photostability and thermal stability. Here we present a highly crystalline and compositionally photostable material, [HC(NH2)2](0.83)Cs(0.17)Pb(I(0.6)Br(0.4))3, with an optical band gap of ~1.74 eV, and we fabricated perovskite cells that reached open-circuit voltages of 1.2 volts and power conversion efficiency of over 17% on small areas and 14.7% on 0.715 cm(2) cells. By combining these perovskite cells with a 19%-efficient silicon cell, we demonstrated the feasibility of achieving >25%-efficient four-terminal tandem cells.
Key Findings
1
A mixed-cation, mixed-halide perovskite, [HC(NH2)2]0.83Cs0.17Pb(I0.6Br0.4)3, achieves an optical band gap of approximately 1.74 eV, suitable for silicon tandem cells.
2
Combining the perovskite cell with a 19%-efficient silicon cell demonstrated the feasibility of four-terminal tandem cells exceeding 25% efficiency.
3
Larger 0.715 cm² devices achieved 14.7% power conversion efficiency.
4
Perovskite solar cells using this absorber reached 1.2 V open-circuit voltage and over 17% power conversion efficiency on small areas.
5
The material is highly crystalline and compositionally photostable, addressing stability limitations of prior wide-band-gap perovskite absorbers.
Research Object
mixed-cation lead mixed-halide perovskite absorber [HC(NH2)2](0.83)Cs(0.17)Pb(I(0.6)Br(0.4))3 for tandem solar cells
Research Subject
optical band gap, photostability, thermal stability, and photovoltaic performance of the perovskite absorber and resulting tandem cells
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2016-01-07
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