Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/123456789/34170
Title: Evaluation of the luminescent properties of YAG:Ce,Ru ceramics with different sintering additives
Authors: Suprunchuk, V. E.
Супрунчук, В. Е.
Chapura, O. M.
Чапура, О. М.
Malyavin, F. F.
Малявин, Ф. Ф.
Kravtsov, A. A.
Кравцов, А. А.
Lapin, V. A.
Лапин, В. А.
Bedrakov, D. P.
Бедраков, Д. П.
Vakalov, D. S.
Вакалов, Д. С.
Tarala, L. V.
Тарала, Л. В.
Medyanik, E. V.
Медяник, Е. В.
Keywords: Ceramics;YAG:Ce;Correlated color temperature;CRI;Luminescence;Ruthenium
Issue Date: 2026
Publisher: Springer Science and Business Media Deutschland GmbH
Citation: Suprunchuk V. E., Chapura O. M., Malyavin F. F., Kravtsov A. A., Lapin V. A., Bedrakov D. P., Vakalov D. S., Tarala L. V., Medyanik E. V. Evaluation of the luminescent properties of YAG:Ce,Ru ceramics with different sintering additives // Chemical Papers. - 2026. - 80 (7). - pp. 7857 - 7871. - DOI: 10.1007/s11696-026-04860-z
Series/Report no.: Chemical Papers
Abstract: In this study, YAG:Ce ceramics doped with ruthenium atoms were synthesized for the first time. The effects of ruthenium on the luminescence and colorimetric characteristics of YAG:Ce ceramics are discussed, with variations in the type of sintering additives. The luminescence spectra, chromaticity coordinates, color rendering index, correlated color temperature, luminous flux, and luminous efficiency were studied. For all ruthenium-containing compositions, the color rendering index increases, the color temperature rises, and the chromaticity coordinates shift towards those of white light. An increase in the color rendering index by several percentage points (approximately 8–9.2%) was observed for all ruthenium-containing compositions compared to ruthenium-free ones. This observed increase in the color rendering index of YAG:Ce,Ru ceramic samples is due to the increased proportion of the blue component in the emission spectra. It was shown that incorporating ruthenium atoms into the garnet structure leads to a decrease in luminescence intensity. The decrease in luminescence intensity is attributed to non-radiative energy transfer from Ce3+ to Ru ions, as supported by absorption and temperature-dependent measurements. These results can be used to improve the composition of luminescent ceramics.
URI: https://dspace.ncfu.ru/handle/123456789/34170
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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