Ionic-instability induced color tuning in lead-based, mixed-halide perovskites

Fuente: arXiv
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Main Authors: Ruth, Anthony, Okrepka, Halyna, Vergari, Michele, Desnoyers, Charlie, Nguyen, Minh, Gavioli, Luca, Kamat, Prashant V., Kuno, Masaru
Format: Preprint
Published: 2026
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author Ruth, Anthony
Okrepka, Halyna
Vergari, Michele
Desnoyers, Charlie
Nguyen, Minh
Gavioli, Luca
Kamat, Prashant V.
Kuno, Masaru
author_facet Ruth, Anthony
Okrepka, Halyna
Vergari, Michele
Desnoyers, Charlie
Nguyen, Minh
Gavioli, Luca
Kamat, Prashant V.
Kuno, Masaru
contents Contrary to conventional wisdom, intermediate photoluminescence energies can be stabilized in mixed-halide lead perovskites during photosegregation. These intermediate energies reside between those of the parent, mixed-halide alloy and fully photosegregated specimens. This demonstrates rudimentary color tuning and has practical implications for potential uses of mixed-halide perovskites in lighting applications. More fundamentally, such color tuning begs the question of how intermediate photosegregation energies arise and how they are kinetically stabilized. What follows is a study of the kinetics of terminal photosegregation energies under pulsed laser excitation. Through concerted continuous wave and pulsed laser photosegregation measurements, we develop a kinetic rationalization for how photosegregations repetition rate or duty cycle and peak fluence dependencies lead to intermediate, terminal photoluminescence energies. The developed model, in turn, explains prior observations of pulsed illumination photosegregation and offers potential insights into other, yet to be explained, phenomena such as spectral blueshifting under high intensity, pulsed illumination.
format Preprint
id arxiv_https___arxiv_org_abs_2603_08953
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Ionic-instability induced color tuning in lead-based, mixed-halide perovskites
Ruth, Anthony
Okrepka, Halyna
Vergari, Michele
Desnoyers, Charlie
Nguyen, Minh
Gavioli, Luca
Kamat, Prashant V.
Kuno, Masaru
Materials Science
Contrary to conventional wisdom, intermediate photoluminescence energies can be stabilized in mixed-halide lead perovskites during photosegregation. These intermediate energies reside between those of the parent, mixed-halide alloy and fully photosegregated specimens. This demonstrates rudimentary color tuning and has practical implications for potential uses of mixed-halide perovskites in lighting applications. More fundamentally, such color tuning begs the question of how intermediate photosegregation energies arise and how they are kinetically stabilized. What follows is a study of the kinetics of terminal photosegregation energies under pulsed laser excitation. Through concerted continuous wave and pulsed laser photosegregation measurements, we develop a kinetic rationalization for how photosegregations repetition rate or duty cycle and peak fluence dependencies lead to intermediate, terminal photoluminescence energies. The developed model, in turn, explains prior observations of pulsed illumination photosegregation and offers potential insights into other, yet to be explained, phenomena such as spectral blueshifting under high intensity, pulsed illumination.
title Ionic-instability induced color tuning in lead-based, mixed-halide perovskites
topic Materials Science
url https://arxiv.org/abs/2603.08953