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Hot-Carrier Photoluminescence in Low-Temperature CsSnI3 Nanocrystals

  • Kyle Kluherz

Research output: NLRPresentation

Abstract

In the halide perovskites, the B-site metal lone-pairs electrons are strongly suspected to underpin many of the interesting properties of the inorganic halide perovskites. Recently, a stable low-temperature monoclinic polar phase was predicted for CsSnI3, opening the possibility of direct investigation of both these lone pair electrons and a ferroelectric distorted structure. To date there are no other reports of such a structure in CsSnI3, and a known low-temperature monoclinic structure in CsSnBr3 remains unexplored. We have found optical evidence of a transformation occurring around 240 K in CsSnI3 nanocrystals, with several changes in optical behavior below this transition point, including novel high-energy photoluminescene and new states in the transient absorption spectrum. We have successfully characterized the optical properties of this low-temperature phase and found evidence for a polar, monoclinic structure. Discovery of a stable monoclinic polar structure in the halide perovskites opens many new potential directions for further research and electronics applications.
Original languageAmerican English
Number of pages48
DOIs
StatePublished - 2026

Publication series

NamePresented at the American Chemical Society (ACS) Spring 2026 Meeting, 22-26 March 2026, Atlanta, Georgia

NLR Publication Number

  • NLR/PR-5900-99748

Keywords

  • carrier cooling
  • hot carrier
  • low temperature
  • nanocrystals
  • perovskite
  • photoluminescence

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