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dc.contributor.authorGolonko, Piotr-
dc.contributor.authorSadowska, Karolina-
dc.contributor.authorRagiń, Tomasz-
dc.contributor.authorKochanowicz, Marcin-
dc.contributor.authorMiluski, Piotr-
dc.contributor.authorDorosz, Jan-
dc.contributor.authorKuwik, Marta-
dc.contributor.authorPisarski, Wojciech-
dc.contributor.authorPisarska, Joanna-
dc.contributor.authorLeśniak, Magdalena-
dc.contributor.authorDorosz, Dominik-
dc.contributor.authorŻmojda, Jacek-
dc.date.accessioned2022-06-24T11:32:03Z-
dc.date.available2022-06-24T11:32:03Z-
dc.date.issued2022-
dc.identifier.citationMaterials, Vol. 15, iss. 11 (2022), art. no. 3797pl_PL
dc.identifier.issn1996-1944-
dc.identifier.urihttp://hdl.handle.net/20.500.12128/23546-
dc.description.abstractGlass-ceramic is semi-novel material with many applications, but it is still problematic in obtaining fibers. This paper aims to develop a new glass-ceramic material that is a compromise between crystallization, thermal stability, and optical properties required for optical fiber technology. This compromise is made possible by an alternative method with a controlled crystallization process and a suitable choice of the chemical composition of the core material. In this way, the annealing process is eliminated, and the core material adopts a glass-ceramic character with high transparency directly in the drawing process. In the experiment, low phonon antimony-germanate-silicate glass (SGS) doped with Eu3+ ions and different concentrations of P2O5 were fabricated. The glass material crystallized during the cooling process under conditions similar to the drawing processes'. Thermal stability (DSC), X-ray photo analysis (XRD), and spectroscopic were measured. Eu3+ ions were used as spectral probes to determine the effect of P2O5 on the asymmetry ratio for the selected transitions (5D0 7F1 and 5D0 7F2). From the measurements, it was observed that the material produced exhibited amorphous or glass-ceramic properties, strongly dependent on the nucleator concentration. In addition, the conducted study confirmed that europium ions co-form the EuPO4 structure during the cooling process from 730 ◦ C to room temperature. Moreover, the asymmetry ratio was changed from over 4 to under 1. The result obtained confirms that the developed material has properties typical of transparent glass-ceramic while maintaining high thermal stability, which will enable the fabrication of fibers with the glass-ceramic core.pl_PL
dc.language.isoenpl_PL
dc.rightsUznanie autorstwa 3.0 Polska*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/pl/*
dc.subjectactive glass-ceramicpl_PL
dc.subjectluminescent propertiespl_PL
dc.subjectnucleationpl_PL
dc.subjectprecursor of crystallizationpl_PL
dc.subjectantimony-germanate glasspl_PL
dc.subjectEu3+ ionspl_PL
dc.subjectasymmetry ratiopl_PL
dc.titleCrystallization Mechanism and Optical Properties of Antimony-Germanate-Silicate Glass-Ceramic Doped with Europium Ionspl_PL
dc.typeinfo:eu-repo/semantics/articlepl_PL
dc.identifier.doi10.3390/ma15113797-
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