Mixed-Halide Double Perovskite Cs 2 AgBiX 6 (X=Br, I) with Tunable Optical Properties via Anion Exchange

Lead-free double perovskites, A M M X , are considered as promising alternatives to lead-halide perovskites, in optoelectronics applications. Although iodide (I) and bromide (Br) mixing is a versatile tool for bandgap tuning in lead perovskites, similar mixed I/Br double perovskite films have not be...

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Veröffentlicht in:ChemSusChem 2021-10, Vol.14 (20), p.4507-4515
Hauptverfasser: Wu, Hua, Erbing, Axel, Johansson, Malin B, Wang, Junxin, Kamal, Chinnathambi, Odelius, Michael, Johansson, Erik M J
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Sprache:eng
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Zusammenfassung:Lead-free double perovskites, A M M X , are considered as promising alternatives to lead-halide perovskites, in optoelectronics applications. Although iodide (I) and bromide (Br) mixing is a versatile tool for bandgap tuning in lead perovskites, similar mixed I/Br double perovskite films have not been reported in double perovskites, which may be due to the large activation energy for ion migration. In this work, mixed Br/I double perovskites were realized utilizing an anion exchange method starting from Cs AgBiBr solid thin-films with large grain-size. The optical and structural properties were studied experimentally and theoretically. Importantly, the halide exchange mechanism was investigated. Hydroiodic acid was the key factor to facilitate the halide exchange reaction, through a dissolution-recrystallization process. In addition, the common organic iodide salts could successfully perform halide-exchange while retaining high mixed-halide phase stability and strong light absorption capability.
ISSN:1864-5631
1864-564X
1864-564X
DOI:10.1002/cssc.202101146