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Title: Strong correlation between a-site cation order and self-trapped exciton emission in 0D hybrid perovskites
Authors: Fang, FE 
Shen, YW
Li, Y
Shih, KM
Hu, HL
Zhong, HZ
Shi, YM
Wu, TT 
Issue Date: Feb-2025
Source: Small science, 1 Feb. 2024, v. 5, no. 2, 2400443
Abstract: Metal halide perovskites and their derived materials have garnered significant attention as promising materials for solar cell and light-emitting applications. Among them, 0D perovskites, characterized by unique crystallographic/electronic structures with isolated metal halide octahedra, exhibit tremendous potential as light emitters with self-trapped exciton (STE). However, the modulation of STE emission characteristics in 0D perovskites primarily focuses on regulating B- or X-site elements. In this work, a lead-free compound, Sb3+-doped ((C2H5)(2)NH2)(3)InCl6 single crystal, which exhibits a high photoluminescence quantum yield, is synthesized, and with increasing temperature, the A-site organic cations undergo a transition from an ordered configuration to a disordered one, accompanied by a redshift in the STE emission. Furthermore, Hirshfeld surface calculations reveal that high temperatures enhance the thermal vibrations of SbCl63- clusters and the octahedra distortion, which are responsible for the redshift. Since this thermally triggered transition of A-site order is reversible, it can be exploited for temperature-sensing applications. Overall, in this work, valuable insights are provided into the role of A-site cations in modulating STE emission and the design of efficient light emitters.
Keywords: A-site cations
Order-disorder transformations
Self-trapped excitons
Temperature sensings
0D perovskites
Journal: Small science 
EISSN: 2688-4046
DOI: 10.1002/smsc.202400443
Rights: © 2024 The Author(s). Small Science published by Wiley-VCH GmbH. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
© 2024 The Author(s). Small Science published by Wiley-VCH GmbH
Creative Commons Attribution 4.0 International (https://creativecommons.org/licenses/by/4.0/)
The following publication Fang, F., Shen, Y., Li, Y., Shih, K., Hu, H., Zhong, H., Shi, Y. and Wu, T.T. (2025), Strong Correlation Between A-Site Cation Order and Self-Trapped Exciton Emission in 0D Hybrid Perovskites. Small Sci., 5: 2400443 is available at https://dx.doi.org/10.1002/smsc.202400443.
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