Temperature-Dependent Spectroscopy of Cr3+:YGG Nanophosphors with Multisite Emission

Fuente: arXiv
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Autor principal: Chaika, Mykhailo
Formato: Preprint
Publicado: 2025
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author Chaika, Mykhailo
author_facet Chaika, Mykhailo
contents An important feature of Cr3+ is the ability to tune the absorption and emission spectra by changing the host. However, in some cases, different emission spectra can be detected in samples with similar Racah parameters. The present paper reports changes in the luminescence properties of Cr3+:YGG nanocrystals. Cr3+:YGG nanocrystals were synthesized by a modified Pechini method to obtain nanocrystals containing two fractions of Cr3+:YGG nanocrystals with different lattice parameters and crystalline sizes. The increase in the concentration of Cr3+ ions leads to a redshift of the 4T2g emission from 750 nm to 850 nm for luminescence spectra measured at 80K. In contrast, room temperature luminescence spectra showed similarity in the shape of the emission spectra. The calculated crystal field strength was found to increase with the concentration of Cr3+ ions, so the detected patterns in low-temperature luminescence spectra were explained by energy transfer chain processes.
format Preprint
id arxiv_https___arxiv_org_abs_2510_21237
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Temperature-Dependent Spectroscopy of Cr3+:YGG Nanophosphors with Multisite Emission
Chaika, Mykhailo
Materials Science
An important feature of Cr3+ is the ability to tune the absorption and emission spectra by changing the host. However, in some cases, different emission spectra can be detected in samples with similar Racah parameters. The present paper reports changes in the luminescence properties of Cr3+:YGG nanocrystals. Cr3+:YGG nanocrystals were synthesized by a modified Pechini method to obtain nanocrystals containing two fractions of Cr3+:YGG nanocrystals with different lattice parameters and crystalline sizes. The increase in the concentration of Cr3+ ions leads to a redshift of the 4T2g emission from 750 nm to 850 nm for luminescence spectra measured at 80K. In contrast, room temperature luminescence spectra showed similarity in the shape of the emission spectra. The calculated crystal field strength was found to increase with the concentration of Cr3+ ions, so the detected patterns in low-temperature luminescence spectra were explained by energy transfer chain processes.
title Temperature-Dependent Spectroscopy of Cr3+:YGG Nanophosphors with Multisite Emission
topic Materials Science
url https://arxiv.org/abs/2510.21237