Joint Workshop LANL/NIMS Quantum and Functional Materials and MANA International Symposium 2024


Nanomaterials - 09

Title

Defect-induced Bandgap Widening and Abnormal Photoluminescence in Formamidinium Tin Iodide Perovskite Microcrystals

Author's photo

Authors

Jiakai Chen

Affiliations

Graduate School of Chemical Sciences and Engineering, Hokkaido University.
Nanoparticle Group, MANA, NIMS.

URL

https://www.nims.go.jp/mana/research/j4phan00000005zn.html

Email

CHEN.Jiakai@nims.go.jp

Abstract

Formamidinium tin iodide (FASnI3) has emerged as promising semiconductor materials for various optoelectronic applica-tions. However, the structure-photophysical property relationship remains ambiguous owing to the ready occurrence of structural defects in the fragile lattice. Here, using FASnI3 microcrystals synthesized with tailored reaction conditions, we unveil that structural defects can induce bandgap widening and abnormal photoluminescence. Based on combined analysis of X-ray photoelectron spectroscopy, solid nuclear magnetic resonance, and optical spectroscopy, we propose that bandgap widening could stem from defect-mediated lattice distortion. Temperature-dependent photoluminescence measurements lead us to the discovery of a new near-infrared photoluminescence band between 185 and 10 K and negative thermal quenching in a broad range of 110~200 K. We believe that the knowledge gained here may not only offer a plausible roadmap to prepare high-quality organic-inorganic tin halide perovskite crystals but can also deepen our understanding on the relationship between defects and photophysical properties of tin-based perovskites. 

Fig. 1. Scheme illustration of defect-induced bandgap widening and new near-infrared photoluminescence in FASnI3 microcrystals.
Fig. 2. (a) PL spectra and (b) their contour plot of FASnI3 microcrystals upon heating from 10 K to 300 K.

Reference

  1. J.-K. Chen, B.-B. Zhang, N. Shirahata, H.-T. Sun, ACS Materials Lett. 6 (8), 3218-3225 (2024), DOI 10.1021/acsmaterialslett.4c00860
  2. S. Kahmann, O. Nazarenko, S. Shao, Q. Hordiichuk, M. Kepenekian, J. Even, M. V. Kovalenko, G. R. Blake, M. A. Loi, ACS Energy Lett. 5 (8), 2512-2519 (2020), DOI 10.1021/acsenergylett.0c01166