Crystal Clamping in (Ba,Sr)TiO3 Borosilicate Glass Ceramics

A. Yadav, C. Gautam
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Abstract

Perovskite glass ceramics have attracted the attention of researchers and scientists due to wide range of applications in energy storage devices, solar cells, photovoltaic cells etc. Barium titanate is the first discovered perovskite glass ceramics. After discovery of barium titanate, several perovskite glass ceramics have been discovered. Several substitutions have been also attempted for progress of perovskites. Barium strontium titanate is one of perovskite glass ceramics in which few barium ions are replaced by strontium ions. The crystal clamping is also found in few perovskite glass ceramics e.g. PbTiO3. In the present investigation, our focus is on the synthesis and crystallization behavior of barium strontium titanate borosilicate glass-ceramics in glass system 64[(Ba1-xSrx).TiO3]-30[2SiO2.B2O3]-5[K2O]-1[La2O3] (0.0 ≤ x ≤ 1.0). Synthesized glasses were characterized by differential thermal analysis, X-ray diffraction, and scanning electron microscopy. The crystallization behavior showed the formation of major crystalline phase of BaTiO3/ BaSrTiO3/ Ba1.91Sr0.09TiO4/ SrTiO3 along with some pyrochlore phase of Ba2TiSi2O8/ Sr2TiSi2O8/ Ba2Ti2B2O9/ Sr2B2O5. The crystalline phase formation depends upon both composition as well as the crystallization process. The crystal clamping was attributed tosynthesizing lass-ceramics samples during the crystallization. Bulk barium strontium titanate glass ceramics were successfully prepared by melt quench method. X-ray diffraction studies confirm the formation of major perovskite phase. During the crystallization of glasses, crystal clamping is attributed in the barium strontium titanate glass ceramics.
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硼硅玻璃陶瓷中的(Ba,Sr)TiO3 晶体夹层
由于在储能设备、太阳能电池、光伏电池等方面的广泛应用,过氧化物玻璃陶瓷吸引了研究人员和科学家的关注。钛酸钡是最早发现的过氧化物玻璃陶瓷。在发现钛酸钡之后,又发现了多种过氧化物玻璃陶瓷。人们还尝试了几种替代品,以促进过氧化物的发展。钛酸锶钡就是其中一种用锶离子取代了少量钡离子的包晶玻璃陶瓷。在本研究中,我们的重点是玻璃体系 64[(Ba1-xSrx).TiO3]-30[2SiO2.B2O3]-5[K2O]-1[La2O3](0.0 ≤ x ≤ 1.0)中钛酸锶钡硼硅酸盐玻璃陶瓷的合成和结晶行为。结晶行为显示形成了 BaTiO3/ BaSrTiO3/ Ba1.91Sr0.09TiO4/ SrTiO3 的主要结晶相,以及 Ba2TiSi2O8/ Sr2TiSi2O8/ Ba2Ti2B2O9/ Sr2B2O5 的一些火成相。晶相的形成既取决于成分,也取决于结晶过程。采用熔融淬火法成功制备了块状钛酸锶钡玻璃陶瓷。X 射线衍射研究证实了主要包晶相的形成。在玻璃结晶过程中,钛酸锶钡玻璃陶瓷出现了晶体夹持现象。
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