Bismuth-Germanate Glasses: Synthesis, Structure, Luminescence, and Crystallization

Author:

Serkina Ksenia1,Stepanova Irina1,Pynenkov Aleksandr2,Uslamina Maria2,Nishchev Konstantin2,Boldyrev Kirill3ORCID,Avetisov Roman1,Avetissov Igor1

Affiliation:

1. Department of Chemistry and Technology of Crystals, D. Mendeleev University of Chemical Technology of Russia (MUCTR), 125480 Moscow, Russia

2. Institute of High Technologies and New Materials, National Research Mordovia State University, 430005 Saransk, Russia

3. Laboratory of Fourier-Spectroscopy, Institute for Spectroscopy RAS, 108840 Troitsk, Russia

Abstract

Bismuth-germanate glasses, which are well known as a promising active medium for broadband near-infrared spectral range fiber lasers and as an initial matrix for nonlinear optical glass ceramics, have been synthesized in a 5–50 mol% Bi2O3 wide concentration range. Their structural and physical characteristics were studied by Raman and FT-IR spectroscopy, differential scanning calorimetry, X-ray diffraction, optical, and luminescence methods. It has been found that the main structural units of glasses are [BiO6] and [GeO4]. The growth in bismuth oxide content resulted in an increase in density and refractive index. The spectral and luminescent properties of glasses strongly depended on the amount of bismuth active centers. The maximum intensity of IR luminescence has been achieved for the 5Bi2O3-95GeO2 sample. The heat treatment of glasses resulted in the formation of several crystalline phases, the structure and amount of which depended on the initial glass composition. The main phases were non-linear Bi2GeO5 and scintillating Bi4Ge3O12. Comparing with the previous papers dealing with bismuth and germanium oxide-based glasses, we enlarge the range of Bi2O3 concentration up to 50 mol% and decrease the synthesis temperature from 1300 to 1100 °C.

Funder

Ministry of Science and Higher Education of Russia

Publisher

MDPI AG

Subject

Materials Science (miscellaneous),Ceramics and Composites

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