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The influence of TiO(2 )on the structure and properties of sodium-zinc phosphate glasses
Autoři: Černošek Zdeněk | Chládková Monika | Holubová Jana
Rok: 2020
Druh publikace: článek v odborném periodiku
Název zdroje: Journal of Non-Crystalline Solids
Název nakladatele: Elsevier Science BV
Místo vydání: Amsterdam
Strana od-do: 119866
Tituly:
Jazyk Název Abstrakt Klíčová slova
cze Vliv TiO2 na strukturu a vlastnosti sodnozinečnatých fosfátových skel Byl studován vliv oxidu titaničitého na strukturu a vlastnosti fosfátových skel s obsahem sodíku.
eng The influence of TiO(2 )on the structure and properties of sodium-zinc phosphate glasses xTiO(2)-(40-x)ZnO-10Na(2)O-50P(2)O(5) glasses were prepared up to x = 20. The stabilizing effect of titanium on the phosphate glasses was tested. The structure of the glasses was studied by Raman, both P-31 and( 23)Na MAS NMR spectroscopies and( 31)P static NMR. The increasing titanium content caused the change in the metaphosphate structure into pyrophosphate. The amount of reduced titanium was detected by electron paramagnetic resonance to be less than 0.5% and the coordination polyhedron of titanium was identified as the tetragonally distorted octahedron with some trigonal deformation. The results of basic thermoanalytical values, density and microhardness confirmed the anticipated influence of titanium on the strengthening of the glass network. The influence of titanium on surface layer thickness and solubility was tested in demineralized water and in a saline solution. It was determined that even a concentration of 1mol% TiO2 significantly decreases the degradation rate and thickness of the surface layer. The thickness of the surface layer of glass without titanium was found to be about 40 mu m and the thickness of the surface layer of glass with 1 mol% TiO2 was found to be close to 7 mu m. The results obtained correlate well with the significant stabilizing effect of titanium. It is possible to conclude that the determination of surface layer thickness does not depend on the solvent but only on the chemical composition. Phosphate glasses; Titanium; Raman spectroscopy; P-31 and Na-23 NMR; Thermal properties