Triple-junction solar cells with cyanate in ultrawide-bandgap perovskites

被引:0
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作者
Shunchang Liu
Yue Lu
Cao Yu
Jia Li
Ran Luo
Renjun Guo
Haoming Liang
Xiangkun Jia
Xiao Guo
Yu-Duan Wang
Qilin Zhou
Xi Wang
Shaofei Yang
Manling Sui
Peter Müller-Buschbaum
Yi Hou
机构
[1] National University of Singapore,Department of Chemical and Biomolecular Engineering
[2] National University of Singapore,Solar Energy Research Institute of Singapore (SERIS)
[3] Beijing University of Technology,Beijing Key Laboratory of Microstructure and Properties of Solids, Faculty of Materials and Manufacturing
[4] Suzhou Maxwell Technologies,TUM School of Natural Sciences, Department of Physics, Chair for Functional Materials
[5] Technical University of Munich,Heinz Maier
[6] Technical University of Munich,Leibniz Zentrum (MLZ)
来源
Nature | 2024年 / 628卷
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摘要
Perovskite bandgap tuning without quality loss makes perovskites unique among solar absorbers, offering promising avenues for tandem solar cells1,2. However, minimizing the voltage loss when their bandgap is increased to above 1.90 eV for triple-junction tandem use is challenging3–5. Here we present a previously unknown pseudohalide, cyanate (OCN−), with a comparable effective ionic radius (1.97 Å) to bromide (1.95 Å) as a bromide substitute. Electron microscopy and X-ray scattering confirm OCN incorporation into the perovskite lattice. This contributes to notable lattice distortion, ranging from 90.5° to 96.6°, a uniform iodide–bromide distribution and consistent microstrain. Owing to these effects, OCN-based perovskite exhibits enhanced defect formation energy and substantially decreased non-radiative recombination. We achieved an inverted perovskite (1.93 eV) single-junction device with an open-circuit voltage (VOC) of 1.422 V, a VOC × FF (fill factor) product exceeding 80% of the Shockley–Queisser limit and stable performance under maximum power point tracking, culminating in a 27.62% efficiency (27.10% certified efficiency) perovskite–perovskite–silicon triple-junction solar cell with 1 cm2 aperture area.
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页码:306 / 312
页数:6
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