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January 22, 2026Journal of Optical Technology0 citations

Photoluminescence study of inorganic CsPbBr 3 perovskite nanocrystals localized in an electrodynamic trap

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MSMaxim SemyninARA. V. RomanovaDTD.A. Tatarinov

Key Points

  • The study aims to investigate how the localization environment affects the photoluminescence of CsPbBr3 perovskite nanocrystals.
  • Localized CsPbBr3 nanocrystals were delivered into a quadrupole electrodynamic trap via the paper spray electrospraying technique.
  • Direct current was applied to induce spraying from paper cartridges.
  • Photoluminescence spectra were measured using ultraviolet laser excitation and a monochromator.
  • Photoluminescence spectra of perovskite nanocrystals were obtained in both colloidal solution and quadrupole trap conditions.
  • A notable difference was observed, with the spectrum of localized nanocrystals being narrower than that in the colloidal solution.

Abstract

Subject of study. The study focuses on CsPbBr 3 perovskite nanocrystals (NCs) localized in a quadrupole electrodynamic trap. Aim of study. The aim was to establish the dependence of the photoluminescence spectral characteristics of perovskite NCs on their localization environment, specifically in a colloidal solution and quadrupole electrodynamic trap. Method. Perovskite NCs were delivered to the trap using the “paper spray” electrospraying technique. Spraying from paper cartridges was induced by applying a direct current to the cartridges. Spectroscopy of the localized particles was performed under ultraviolet laser excitation using a monochromator and detector. Main results. The photoluminescence spectra of the perovskite NCs were obtained both in a colloidal solution and when they were localized in a quadrupole electrodynamic trap. A dependence was observed; the photoluminescence spectrum of the localized perovskite NCs was narrower than that of NCs in the colloidal solution. Practical significance. The results obtained in this study serve as a foundation for detailed analyses of the influence of various parameters, such as the particle size, shape, surface states, chemical composition, geometric orientation, and surrounding environment, on the optical properties of nanomaterials.

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Cite This Study

Semynin et al. (2025) studied this question.

synapsesocial.com/papers/6971bd4c642b1836717e2067https://doi.org/10.1364/jot.92.000276
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