Raman study of glasses in the NbO2F–BaF2–InF3–ErF3 and CdNbOF5–BaF2–InF3 systems
https://doi.org/10.17586/2220-8054-2020-11-3-333-337
Abstract
Glasses in the NbO2F–BaF2–InF3 and CdNbOF5–BaF2–InF3 systems have been obtained and investigated by means of IR- and Raman spectroscopy. The analysis of the inelastic light scattering spectra was used to identify the contribution of the photoluminescence in the glasses studied. The contribution of the indium photoluminescence into the inelastic light scattering spectrum of the glasses in the NbO2F–BaF2–InF3 and CdNbOF5–BaF2–InF3 systems has been established by scattering excitation with a laser at a wavelength of 532 nm.
Keywords
About the Authors
L. N. IgnatievaRussian Federation
N. N. Savchenko
Russian Federation
159 Stoletiya av., Vladivostok, 690022
Y. V. Marchenko
Russian Federation
159 Stoletiya av., Vladivostok, 690022
V. A. Mashchenko
Russian Federation
159 Stoletiya av., Vladivostok, 690022
V. M. Bouznik
Russian Federation
159 Stoletiya av., Vladivostok, 690022
17 Radio st., Moscow, 105005
References
1. Poulain Mi., Poulain Ma. Oxyfluoride glasses. Mater. Sci. Forum, 1991, 67–68, P. 129–136.
2. Polishchuk S.A., Ignat’eva L.N., MarchenkoYu.V., Bouznik V.M. Oxyfluoride glasses (A review), Glass Phys. Chem., 2011, 37, P. 1–20.
3. Ignatieva L.N., Antokhina T.F., et al. A spectroscopy study of the structure of fluoroniobate glass. Glass Phys. Chem., 1998 24, P. 97–100.
4. Ignatieva L.N., Savchenko N.N., Marchenko Yu.V. Glasses in the NbO2F–BaF2–InF3–ErF3 system. J. Fluorine Chem., 2018, 213, P. 37–41.
5. Ignatieva L.N., Savchenko N.N., et al. Structure and crystallization of glasses in the MnNbOF5–BaF2–InF3 system. Russ. J. Inorg. Chem., 2018, 63, P. 1389–1394.
6. Ignatieva L.N., Surovtsev N.V., et al. Glasses in the system of MnNbOF5–BaF2–BiF3–ErF3. J. Non-Cryst. Solids, 2011, 357, P. 3807–3812.
7. Fedorov P.P., Luginina A.A., Popov A.I. Transparent oxyfluoride glass ceramics. J. Fluorine Chem., 2015, 172, P. 22–50.
8. Aggarwal I.D., Lu G. Fluoride glass fiber optics, New York, 1991.
9. Doweidar H., El-Egili K., Ramadan R., Khalil E. Structural studies and properties of CdF2–B2O3 glasses. J. Non-Cryst. Solids, 2018, 481, P. 494–502.
10. Savchenko N.N., Ignatieva L.N., Marchenko Yu.V. Synthesis and study of glasses on the base of CdNbOF5, Abs. 13-th Int Conf. on Solid State Chem. Pardubice, Czech Republic, 2018, 172.
11. Ignatieva L.N., Savchenko N.N., Marchenko Yu.V., Sarin S.A. Synthesis, structure and crystallization of glasses in the CdNbOF5–BaF2–InF3 system. Ceram. Int., 2019, 45, P. 17737–17741.
12. Ignatieva L.N., Maslennikova I.G., et al. The role of the REE ions in the glass systems TeO2–PbO·P2O5–PbF2:MF3 (M–Er, Nd). Appl. Phys. A, 2018, 124, 640.
13. Barbosa L.C., Filho C.O., Chillcce E.F. Tellurite glasses for optical amplifiers. Springer Series in Materials Science, 2017, 254, P. 131–153.
14. Ignatieva L.N., Surovtsev N.V., et al. Glasses in the system of MnNbOF5–BaF2–BiF3–ErF3. J. Non-Cryst. Solids, 2011, 357, P. 3807–3812.
15. Ignatieva L.N., Savchenko N.N., et al, Glasses in the systems TeO2–PbO·P2O5–PbF2:EuF3: pecularities of structure, crystallization and luminescence. J. Non-Crystalline Solids, 2016, 450, P. 103–108.
16. Romanov A.N., Haula E.V., et al. Near-IR luminescence from subvalent bismuth species in fluoride glass. Opt. Mater., 2011, 34, P. 155–158.
17. Ignatieva L.N., Surovtsev N.V., et al. Glasses in the system ZrF4–BaF2–BiF3: Thermal and spectroscopic properties. J. Non-Cryst. Solids, 2015, 426, P. 7–12.
18. Midryi A.V., Ivanyukovich A.V., et al. Optical properties of indium nitride powder and films. J. Apl. Spectrosc., 2006, 73, P. 95–98.
Review
For citations:
Ignatieva L.N., Savchenko N.N., Marchenko Y.V., Mashchenko V.A., Bouznik V.M. Raman study of glasses in the NbO2F–BaF2–InF3–ErF3 and CdNbOF5–BaF2–InF3 systems. Nanosystems: Physics, Chemistry, Mathematics. 2020;11(3):333–337. https://doi.org/10.17586/2220-8054-2020-11-3-333-337