Halide Mixing in Cs2AgBi(IxBr1-x)6 Double Perovskites: A Pathway to Tunable Excitonic Properties

Publication date

2024

Authors

Biega, Raisa Ioana
Jöbsis, Huygen J.ISNI 0000000506769504
Gijsberg, Zamorano
Hüskens, Maxim
Hutter, ElineORCID 0000-0002-5537-6545ISNI 0000000492896229
Leppert, Linn

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Cs2AgBiBr6 is an emerging double perovskite semiconductor with robust stability. However, its potential for photovoltaics is limited by its indirect band gap and localized electronic structure featuring a resonant exciton with a large binding energy. Cs2AgBi(IxBr1-x)6 nanocrystals with iodide concentrations of up to 100% were recently demonstrated, but an atomistic understanding of how halide mixing affects the electronic and excited-state structure is missing. Here, we use first-principles GW and Bethe-Salpeter Equation calculations to show that halide mixing leads to a pronounced change in the band gap and character of optical excitations. Exciton binding energies are reduced by up to a factor of 5, with significantly more delocalized excitons in I-rich compounds. We further show that phase-pure bulk alloys with x ≤ 0.11 can be fabricated using mechanosynthesis and measure a red-shifted absorption in line with our calculations. Our study highlights that halide mixing in double perovskites can not only lead to significant band gap changes but may also be used for tuning excitonic properties.

Keywords

Electronic, Optical and Magnetic Materials, General Energy, Physical and Theoretical Chemistry, Surfaces, Coatings and Films

Citation

Biega, R I, Jöbsis, H J, Gijsberg, Z, Hüskens, M, Hutter, E M & Leppert, L 2024, 'Halide Mixing in Cs 2 AgBi(I x Br 1-x ) 6 Double Perovskites : A Pathway to Tunable Excitonic Properties', Journal of Physical Chemistry C, vol. 128, no. 35, pp. 14767-14775. https://doi.org/10.1021/acs.jpcc.4c04453