Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/123456789/32920
Title: Synthesis of optically transparent YAG:Ru ceramics
Other Titles: Получение оптически прозрачного граната YAG:Ru
Authors: Suprunchuk, V. E.
Супрунчук, В. Е.
Kravtsov, A. A.
Кравцов, А. А.
Lapin, V. A.
Лапин, В. А.
Malyavin, F. F.
Малявин, Ф. Ф.
Bedrakov, D. P.
Бедраков, Д. П.
Keywords: Band gap energy;YAG:Ru;ceramic powder;Ceramics;Coprecipitation method;Optical properties
Issue Date: 2025
Publisher: Izdatel'stvo Kalvis
Citation: Suprunchuk V. E., Kravtsov A. A., Lapin V. A., Malyavin F. F., Bedrakov D. P. Synthesis of optically transparent YAG:Ru ceramics // Izvestiya Vuzov. Poroshkovaya Metallurgiya i Funktsional'nye Pokrytiya. - 2025. - 19 (6). - pp. 36 - 43. - DOI: 10.17073/1997-308X-2025-6-36-43
Series/Report no.: Izvestiya Vuzov. Poroshkovaya Metallurgiya i Funktsional'nye Pokrytiya
Abstract: Yttrium–aluminum garnet (YAG) ceramics doped with ruthenium atoms were synthesized in this study. The precursor powder was obtained by the coprecipitation method. The dopant, in the form of ruthenium (III) chloride, was introduced at different technological stages: during precursor powder synthesis and during deagglomeration of the ceramic powder, resulting in two series of samples. The phase composition of the sintered ceramics was examined by X-ray diffraction (XRD). According to the obtained data, no secondary or impurity phases were detected. Differential thermal analysis (DTA) revealed a decrease in the cationic homogeneity of the precursor powder. Incorporation of ruthenium into the YAG structure led to a shift of the exothermic crystallization peak toward higher temperatures. The ceramic samples were sintered at 1815 °C for 20 h, followed by annealing in air at 1500 °C for 2 h. Optical characterization of the ceramics showed that the method of dopant introduction affected both the optical transmittance and the band gap energy. The transmittance at 1100 nm for undoped YAG ceramics was 77.04 %, while for the ruthenium-containing samples it decreased to 65.1 and 74.5 %, depending on the dopant incorporation route. The band gap energy was determined from differential absorption spectra: for pure YAG it was 4.92 eV, and for the Ru-doped ceramics it decreased to a minimum of 4.4 eV.
URI: https://dspace.ncfu.ru/handle/123456789/32920
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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