Résumé
Double perovskites have emerged as promising alternatives to lead halide perovskites, aiming to mitigate challenges related to toxicity and chemical instability. Among them, mixed-valence gold halides such as Cs2Au+Au3 +Cl6, which contain only a single type of metal cation in two oxidation states, stand out due to their unique structural and electronic properties. These materials exhibit strong absorption in the near-infrared range, making them attractive candidates for optoelectronic applications such as photovoltaics. In this work, temperature-dependent optical spectroscopy techniques are employed to demonstrate that these compounds exhibit particularly strong polar electron-phonon coupling, which has a profound impact on their optoelectronic properties. In particular, this coupling induces a temperature-dependent absorption tail that progressively reshapes the absorption spectrum. It is shown that this tail leads to a forbidden band-egde recombination, which explains the reported difficulties in detecting a photoluminescence signal from this class of double perovskites.
| langue originale | Anglais |
|---|---|
| Numéro d'article | e01622 |
| journal | Advanced Optical Materials |
| Volume | 13 |
| Numéro de publication | 32 |
| Les DOIs | |
| état | Publié - 14 nov. 2025 |
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