Abstract
The main aim of this work was to develop an optimal method for the formation of glass-ceramic materials with YNbO4:Tb3+ crystallites at reduced temperatures. Samples of glass-ceramic materials based on sodium, boron, yttrium, niobium and terbium were obtained and their structural and luminescent properties were investigated. The performed studies show that YNbO4:Tb3+crystallized in the obtained samples. It was found that the synthesis from oxide components (sample 1) makes it possible to obtain materials with an M-YNbO4 crystalline phase content about 95% in comparison with synthesis with partial (sample 2) or complete (sample 3) replacement of oxides by salts.
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References
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Acknowledgements
XRD studies were performed using the equipment of the Federal Center for Collective Use "Materials Science and Diagnostics in Advanced Technologies" supported by the Ministry of Education and Science of the Russian Federation, (unique identifier RFMEFI62119X0021). The reported study was funded by RFBR and BRFBR according to the research project № 19-52-04011.
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Moskvichyov, M.I. et al. (2022). Synthesis of Scintillating Sodium Boron Glass-Ceramic Materials Containing YNbO4:Tb3+ Crystallites. In: Khakhomov, S., Semchenko, I., Demidenko, O., Kovalenko, D. (eds) Research and Education: Traditions and Innovations. INTER-ACADEMIA 2021. Lecture Notes in Networks and Systems, vol 422. Springer, Singapore. https://doi.org/10.1007/978-981-19-0379-3_24
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DOI: https://doi.org/10.1007/978-981-19-0379-3_24
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