Abstract
In the present study we explore the possibility to obtain nano- to submicron-sized crystals in an oxide glass-matrix which can serve as a part of the construction of various types of sensors. Two sets of compositions are developed: one in the systems Na2O/Al2O3/B2O3/SiO2/(V2O5)/Fe2O3 and Na2O/MnO/SiO2/Fe2O3 with very high concentrations of Fe2O3 (≥ 10 mol%) where the crystallization of magnetite Fe3O4 and solid solutions of the type (Fe, Mn)IIO⋅(Fe, Mn)III 2O3 is established and another in the systems Na2O/ Al2O3/BaO/TiO2/B2O3/SiO2 and Na2O/Al2O3/BaO/TiO2/B2O3/SiO2/Fe2O3. Here no or only small amounts of iron oxide (≤5.8 mol %) are used and the crystallization of cubic BaTiO3 crystals is achieved. The phase composition is investigated by X-ray diffraction and for selected glass-ceramic samples also by Raman spectroscopy. The microstructure of all synthesized materials is studied by SEM.
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Harizanova, R. et al. (2015). Synthesis of Nano- and Submicron-Sized Crystals for the Preparation of Oxide Glass-Ceramics with Advanced Magnetic and Dielectric Properties. In: Petkov, P., Tsiulyanu, D., Kulisch, W., Popov, C. (eds) Nanoscience Advances in CBRN Agents Detection, Information and Energy Security. NATO Science for Peace and Security Series A: Chemistry and Biology. Springer, Dordrecht. https://doi.org/10.1007/978-94-017-9697-2_37
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DOI: https://doi.org/10.1007/978-94-017-9697-2_37
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