The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics
High erbium content yttrium aluminum garnet (Er:YAG) and yttrium scandium aluminum garnet (Er:YSAG) ceramics have been fabricated from Er:YAG and Er:YSAG powders, respectively. The powders have been synthesized via a reverse precipitation technique, processed by uniaxial pressing followed by cold is...
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ir-20.500.12258-181782023-05-03T13:02:47Z The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics Chikulina, I. S. Чикулина, И. С. Nikova, M. S. Никова, М. С. Tarala, V. A. Тарала, В. А. Vakalov, D. S. Вакалов, Д. С. Lasers KW MJ High erbium content yttrium aluminum garnet (Er:YAG) and yttrium scandium aluminum garnet (Er:YSAG) ceramics have been fabricated from Er:YAG and Er:YSAG powders, respectively. The powders have been synthesized via a reverse precipitation technique, processed by uniaxial pressing followed by cold isostatic pressing, and sintered in a vacuum. TEOS (tetraethoxysilane) was used as a sintering additive. After vacuum sintering, all of the samples were processed by annealing in air to increase the transmittance and polished on both sides. The influence of the Sc3+ content and the synthesis conditions on the microstructure and optical transparency of the Er:YAG and Er:YSAG ceramics have been investigated in detail. It has been found that changing Al3+ for the bigger Sc3+ ion leads to the transmittance increasing to up to 60% at a wavelength of about 1500 nm 2021-10-01T10:10:25Z 2021-10-01T10:10:25Z 2021 Статья Dobretsova, E.; Zhmykhov, V.; Kuznetsov, S.; Chikulina, I.; Nikova, M.; Tarala, V.; Vakalov, D.; Khmelnitsky, R.; Pynenkov, A.; Nishchev, K.; Tsvetkov, V. The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics // DALTON TRANSACTIONS. - 2021. - DOI 10.1039/d1dt02419a http://hdl.handle.net/20.500.12258/18178 en Dalton Transactions application/pdf application/pdf ROYAL SOC CHEMISTRY |
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Lasers KW MJ Chikulina, I. S. Чикулина, И. С. Nikova, M. S. Никова, М. С. Tarala, V. A. Тарала, В. А. Vakalov, D. S. Вакалов, Д. С. The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
description |
High erbium content yttrium aluminum garnet (Er:YAG) and yttrium scandium aluminum garnet (Er:YSAG) ceramics have been fabricated from Er:YAG and Er:YSAG powders, respectively. The powders have been synthesized via a reverse precipitation technique, processed by uniaxial pressing followed by cold isostatic pressing, and sintered in a vacuum. TEOS (tetraethoxysilane) was used as a sintering additive. After vacuum sintering, all of the samples were processed by annealing in air to increase the transmittance and polished on both sides. The influence of the Sc3+ content and the synthesis conditions on the microstructure and optical transparency of the Er:YAG and Er:YSAG ceramics have been investigated in detail. It has been found that changing Al3+ for the bigger Sc3+ ion leads to the transmittance increasing to up to 60% at a wavelength of about 1500 nm |
format |
Статья |
author |
Chikulina, I. S. Чикулина, И. С. Nikova, M. S. Никова, М. С. Tarala, V. A. Тарала, В. А. Vakalov, D. S. Вакалов, Д. С. |
author_facet |
Chikulina, I. S. Чикулина, И. С. Nikova, M. S. Никова, М. С. Tarala, V. A. Тарала, В. А. Vakalov, D. S. Вакалов, Д. С. |
author_sort |
Chikulina, I. S. |
title |
The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
title_short |
The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
title_full |
The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
title_fullStr |
The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
title_full_unstemmed |
The influence of the Sc3+ dopant on the transmittance of (Y,Er)(3)Al5O12 ceramics |
title_sort |
influence of the sc3+ dopant on the transmittance of (y,er)(3)al5o12 ceramics |
publisher |
ROYAL SOC CHEMISTRY |
publishDate |
2021 |
url |
https://dspace.ncfu.ru/handle/20.500.12258/18178 |
work_keys_str_mv |
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