Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications
2025
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Аутори
Milićević, Bojana R.
Ćirić, Aleksandar
Ristić, Zoran
Medić, Mina
Alodhayb, A.N.
Radosavljević Evans, I.
Antić, Željka
Dramićanin, Miroslav
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документуАпстракт
A series of multifunctional Sr2Gd1-xEuxF7 (x = 0, 0.05, 0.10, 0.40, 0.60. 0.80, and 1.00) phosphors in stable colloidal form and as nanopowders have been prepared using a hydrothermal method. Powder X-ray diffraction analysis confirmed that the materials crystallize in a cubic crystal structure. Transmission electron microscopy shows quasi-spherical nanoparticles with an average particle size of ∼24 nm. Photoluminescence measurements show highly efficient red emission in both colloids and nanopowders, with intensity continually increasing up to 80 mol% of Eu3+ content without concentration quenching. The most prominent emission peaks are around 600 nm (orange/red) and 700 nm (deep red), with the latter more pronounced. Quantum efficiency follows a similar trend, and reaches 60 % for the sample with 80 mol% of Eu3+ content. In addition, similar asymmetry ratio values and CIE coordinates show that there is not a big change in the local symmetry around Eu3+ ions or emission color across t...he series. This confirms that Eu3+ resides in the same crystalline environment in samples. The observed 5D0-level lifetimes gradually decrease from 12.0 ms to 6.9 ms as the Eu3+ concentration increases. Judd-Ofelt parameters show slight variation with Eu3+ concentration with Ω4 always larger than Ω2. The temperature-dependent steady-state and time-resolved photoluminescence measurements demonstrate high stability of nanopowders’ emission up to 100 °C. The combination of temperature stability and high efficiency of emission, as well as the untypical dominant deep-red emission at 700 nm labels these nanoparticles as potential nanophosphors for various applications. © 2024 The Authors
Кључне речи:
Deep-red emission / Eu3+ / Heavily-doped fluorides / Judd-Ofelt / PhosphorИзвор:
Journal of Alloys and Compounds, 2025, 1010, 177820-Финансирање / пројекти:
- 2023-07-17 LEDtech-GROW - Led Technology Based on Bismuth-Sensitized Eu3+Luminescence for Cost-Effective Indoor Plant Growth (RS-ScienceFundRS-Promis2023-10412)
- King Saud University, Research Institute Supporting Program [RICSP-24-1]
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200017 (Универзитет у Београду, Институт за нуклеарне науке Винча, Београд-Винча) (RS-MESTD-inst-2020-200017)
Колекције
Институција/група
VinčaTY - JOUR AU - Milićević, Bojana R. AU - Ćirić, Aleksandar AU - Ristić, Zoran AU - Medić, Mina AU - Alodhayb, A.N. AU - Radosavljević Evans, I. AU - Antić, Željka AU - Dramićanin, Miroslav PY - 2025 UR - https://vinar.vin.bg.ac.rs/handle/123456789/14106 AB - A series of multifunctional Sr2Gd1-xEuxF7 (x = 0, 0.05, 0.10, 0.40, 0.60. 0.80, and 1.00) phosphors in stable colloidal form and as nanopowders have been prepared using a hydrothermal method. Powder X-ray diffraction analysis confirmed that the materials crystallize in a cubic crystal structure. Transmission electron microscopy shows quasi-spherical nanoparticles with an average particle size of ∼24 nm. Photoluminescence measurements show highly efficient red emission in both colloids and nanopowders, with intensity continually increasing up to 80 mol% of Eu3+ content without concentration quenching. The most prominent emission peaks are around 600 nm (orange/red) and 700 nm (deep red), with the latter more pronounced. Quantum efficiency follows a similar trend, and reaches 60 % for the sample with 80 mol% of Eu3+ content. In addition, similar asymmetry ratio values and CIE coordinates show that there is not a big change in the local symmetry around Eu3+ ions or emission color across the series. This confirms that Eu3+ resides in the same crystalline environment in samples. The observed 5D0-level lifetimes gradually decrease from 12.0 ms to 6.9 ms as the Eu3+ concentration increases. Judd-Ofelt parameters show slight variation with Eu3+ concentration with Ω4 always larger than Ω2. The temperature-dependent steady-state and time-resolved photoluminescence measurements demonstrate high stability of nanopowders’ emission up to 100 °C. The combination of temperature stability and high efficiency of emission, as well as the untypical dominant deep-red emission at 700 nm labels these nanoparticles as potential nanophosphors for various applications. © 2024 The Authors T2 - Journal of Alloys and Compounds T1 - Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications VL - 1010 SP - 177820 DO - 10.1016/j.jallcom.2024.177820 ER -
@article{
author = "Milićević, Bojana R. and Ćirić, Aleksandar and Ristić, Zoran and Medić, Mina and Alodhayb, A.N. and Radosavljević Evans, I. and Antić, Željka and Dramićanin, Miroslav",
year = "2025",
abstract = "A series of multifunctional Sr2Gd1-xEuxF7 (x = 0, 0.05, 0.10, 0.40, 0.60. 0.80, and 1.00) phosphors in stable colloidal form and as nanopowders have been prepared using a hydrothermal method. Powder X-ray diffraction analysis confirmed that the materials crystallize in a cubic crystal structure. Transmission electron microscopy shows quasi-spherical nanoparticles with an average particle size of ∼24 nm. Photoluminescence measurements show highly efficient red emission in both colloids and nanopowders, with intensity continually increasing up to 80 mol% of Eu3+ content without concentration quenching. The most prominent emission peaks are around 600 nm (orange/red) and 700 nm (deep red), with the latter more pronounced. Quantum efficiency follows a similar trend, and reaches 60 % for the sample with 80 mol% of Eu3+ content. In addition, similar asymmetry ratio values and CIE coordinates show that there is not a big change in the local symmetry around Eu3+ ions or emission color across the series. This confirms that Eu3+ resides in the same crystalline environment in samples. The observed 5D0-level lifetimes gradually decrease from 12.0 ms to 6.9 ms as the Eu3+ concentration increases. Judd-Ofelt parameters show slight variation with Eu3+ concentration with Ω4 always larger than Ω2. The temperature-dependent steady-state and time-resolved photoluminescence measurements demonstrate high stability of nanopowders’ emission up to 100 °C. The combination of temperature stability and high efficiency of emission, as well as the untypical dominant deep-red emission at 700 nm labels these nanoparticles as potential nanophosphors for various applications. © 2024 The Authors",
journal = "Journal of Alloys and Compounds",
title = "Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications",
volume = "1010",
pages = "177820",
doi = "10.1016/j.jallcom.2024.177820"
}
Milićević, B. R., Ćirić, A., Ristić, Z., Medić, M., Alodhayb, A.N., Radosavljević Evans, I., Antić, Ž.,& Dramićanin, M.. (2025). Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications. in Journal of Alloys and Compounds, 1010, 177820. https://doi.org/10.1016/j.jallcom.2024.177820
Milićević BR, Ćirić A, Ristić Z, Medić M, Alodhayb A, Radosavljević Evans I, Antić Ž, Dramićanin M. Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications. in Journal of Alloys and Compounds. 2025;1010:177820. doi:10.1016/j.jallcom.2024.177820 .
Milićević, Bojana R., Ćirić, Aleksandar, Ristić, Zoran, Medić, Mina, Alodhayb, A.N., Radosavljević Evans, I., Antić, Željka, Dramićanin, Miroslav, "Eu3+- activated Sr2GdF7 colloid and nano-powder for horticulture LED applications" in Journal of Alloys and Compounds, 1010 (2025):177820, https://doi.org/10.1016/j.jallcom.2024.177820 . .


