Infrared Spectroscopy of Composite Materials Based on High-Silica Porous Glasses Activated by Bismuth and Yttrium Ions
Composite materials (CMs) based on matrices of high-silica nanoporous glasses (NPGs) activated by bismuth and yttrium ions are synthesized. The CMs are studied by IR spectroscopy (1000–400 cm –1 ), depending on the Bi/Y nitrate ratio in the solution (1 : 1 and 10 : 1) and the heat treatment temperat...
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Veröffentlicht in: | Glass physics and chemistry 2022-12, Vol.48 (6), p.588-593 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Composite materials (CMs) based on matrices of high-silica nanoporous glasses (NPGs) activated by bismuth and yttrium ions are synthesized. The CMs are studied by IR spectroscopy (1000–400 cm
–1
), depending on the Bi/Y nitrate ratio in the solution (1 : 1 and 10 : 1) and the heat treatment temperature of the CMs (from 470 to 870°C). The method of IR spectroscopy in composites identifies vibrations characteristic of the cubic modification Y
2
O
3
and for the monoclinic modification of bismuth oxide (α–Bi
2
O
3
); for vibrations of Bi–O and Bi–O–Bi bonds, as well as Bi
3+
cations in [BiO
6
] and/or [Bio
3
] structural units; and for vibrations of Bi–O–Si bonds, and for Y–O–Y and Y–O bonds. It is established that an increase in the yttrium content in CMs heat-treated at 470 and 870°C, (all other things being equal) leads to the appearance of additional absorption bands at 564, 556, 432, and 424 cm
–1
, which may be related to the formation of the cubic phase Y
2
O
3
. |
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ISSN: | 1087-6596 1608-313X |
DOI: | 10.1134/S1087659622600430 |