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Carbonate formation on sol-gel bioactive glass 58S and on Bioglassreg; 45S5

机译:溶胶 - 凝胶生物活性玻璃58s和BioGlass®45s5上的碳酸盐形成

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Carbonate formation on a sol-gel synthesized bioactive glass (58S) and on a traditional fused glass (Bioglass® 45S5) has been studied by means of infrared spectroscopy, using water and carbon dioxide as probe molecules to simulate the carbonation process. Silica samples doped with Ca and Na have been also analyzed for comparison. It was observed that both CO_2 and an excess of water vapour are necessary to form carbonates on both bioactive glasses and reference silica systems: this indicates that CO_3~(2-) ions are formed through dissolution of CO_2 in a liquid-like water monolayer on the sample surface, and that they react with Ca~(++) or Na~+ cations, giving rise to ionic carbonates. Carbonates formation at spectroscopically detectable levels also on a very low surface area material such as Bioglass® 45S5 indicates that not only surface cations are involved in the carbonation process, but also some cations belonging to the inner glass layers. This is confirmed by the fact that carbonation increases during time and the proces keeps going for a very long time. Mostly calcium-bound carbonates are formed on 58S bioactive glass, whereas only sodium-bound carbonates are formed on Bioglass® 45S5, even though both sodium and calcium are present in the latter sample. This indicates that the surface layers of Bioglass® are enriched in sodium.
机译:上的溶胶 - 凝胶碳酸盐地层合成的生物活性玻璃(58S),并在传统的熔融玻璃(Bioglass®45S5)已经由红外光谱法研究,使用水和二氧化碳作为探针分子来模拟碳酸化过程。二氧化硅样品掺杂用Ca和Na已还分析了比较。据观察,既CO_2和过量的水蒸汽是必要的,以形成在两个生物活性玻璃和参考二氧化硅系统碳酸盐:这表明CO_3〜(2-)离子通过CO_2的溶解在所形成的液体状的水单层上样品表面,并且它们用Ca〜(++)或Na〜+阳离子反应,从而产生离子的碳酸盐。碳酸盐形成在光谱检测的水平上也非常低的表面积材料如Bioglass®45S5表明不仅表面的阳离子参与碳酸化过程中,也属于内玻璃层一些阳离子。这是一个事实,即时间内碳化增加,理线不断去了很长一段时间的证实。大多钙结合碳酸盐形成在58S生物活性玻璃,而形成在Bioglass®45S5仅钠结合的碳酸酯,即使两个钠和钙都存在后者样本。这表明Bioglass®的表面层中的钠充实。

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