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  5. Strain-induced rubidium incorporation into wide-bandgap perovskites reduces photovoltage loss

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Article
en
2025

Strain-induced rubidium incorporation into wide-bandgap perovskites reduces photovoltage loss

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en
2025
Vol 388 (6742)
Vol. 388
DOI: 10.1126/science.adt3417

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Michael Graetzel
Michael Graetzel

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Likai Zheng
Mingyang Wei
Felix T. Eickemeyer
+19 more

Abstract

A-site cation mixing can enhance the photovoltaic performance of a wide-bandgap (WBG) perovskite, but rubidium (Rb) cation mixing generally forms a nonperovskite phase. We report that lattice strain locks Rb ions into the α-phase of the lattice of a triple-halide WBG perovskite, preventing phase segregation into a nonperovskite Rb-cesium-rich phase. This process cooperates with chloride accommodation and promotes halide homogenization across the entire film volume. The resulting 1.67-electron volt WBG perovskite exhibits photoluminescence quantum yields exceeding 14% under 1-sun-equivalent irradiation, corresponding to a quasi-Fermi level splitting of ~1.34 electron volts. A WBG perovskite solar cell with an open-circuit voltage (VOC) of 1.30 volts was prepared, corresponding to 93.5% of the radiative VOC limit and representing the lowest photovoltage loss relative to the theoretical limit observed in WBG perovskites.

How to cite this publication

Likai Zheng, Mingyang Wei, Felix T. Eickemeyer, Jing Gao, Bin Huang, Ummugulsum Gunes, Pascal Schouwink, David Wenhua Bi, Virginia Carnevali, Mounir Mensi, Francesco Biasoni, Yuxuan Zhang, Lorenzo Agosta, Vladislav Sláma, Nikolaos Lempesis, Michael A. Hope, Shaik M. Zakeeruddin, Lyndon Emsley, Ursula Röthlisberger, Lukas Pfeifer, Yimin Xuan, Michael Graetzel (2025). Strain-induced rubidium incorporation into wide-bandgap perovskites reduces photovoltage loss. , 388(6742), DOI: https://doi.org/10.1126/science.adt3417.

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Publication Details

Type

Article

Year

2025

Authors

22

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1126/science.adt3417

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