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Phase Composition and Spectroscopic Characterization of Barium Titanate Containing Glass Ceramics

机译:含玻璃陶瓷钛酸钡的相组成和光谱性鉴定

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Glasses are synthesized in the system Na_2O/BaO/TiO_2/SiO_2/B_2O_3/Al_2O_3 for different Na_2O/Al_2O_3 ratios. X-ray photoelectron spectroscopy is utilized for the estimation of the valence states of titanium and the occurrence of solely Ti~(4+) is observed. The presence of bonds from the type Si-O-Al, Si-O-Si and Na-O-Si is detected in the glasses and it is concluded that the increasing alumina concentration leads to decreasing binding energy of the Al~(3+) ions in the glass. The glasses are subjected to thermal treatment in order to crystallize barium titanate with controllable size and in a high-volume fraction. The phase composition of the prepared glass ceramics is studied by X-ray diffraction. The precipitation of cubic barium titanate but also of other crystalline phases is observed while increasing alumina concentration and temperature. The structure of selected glass ceramics is investigated by infrared spectroscopy. The effect of crystallization on the main structural units and their change during the course of the crystallization is traced and the presence of the BaTiO_3 phase is confirmed by the peak at about 570 cm~(-1). The peaks in the range of 1200-1500 cm~(-1) are with varying intensities and witness the occurrence of changing as number during the course of crystallization BO3 triangles containing non-bridging oxygen ions. The presence of BO4 and SiO_4 tetrahedra in the glass ceramics is suggested from the peaks in the range of 800-1200 cm~(-1).
机译:对于不同的NA_2O / AL_2O_3比率,在系统NA_2O / BAO / TIO_2 / SIO_2 / B_2O_3 / AL_2O_3中合成眼镜。 X射线光电子能谱用于估计钛的价态,并且观察到仅Ti〜(4+)的发生。在眼镜中检测来自Si-O-Al,Si-Si和Na-O-Si的键的存在,并且得出结论,增加氧化铝浓度导致Al〜(3+的结合能量降低)玻璃中的离子。玻璃经受热处理,以使钛酸钡与可控尺寸和高容量分解结晶。通过X射线衍射研究制备的玻璃陶瓷的相组合物。在增加氧化铝浓度和温度的同时观察立方钡钛酸钡但也观察到其他结晶相的沉淀。通过红外光谱研究了所选玻璃陶瓷的结构。追踪结晶对主要结构单元的影响及其在结晶过程中的变化,并通过约570cm〜(1)的峰确认BATIO_3相的存在。在1200-1500cm〜(-1)范围内的峰具有不同的强度,并且见证在含有非桥接氧离子的结晶Bo3三角形过程中变化的发生变化。从800-1200cm〜(-1)范围内的峰值提出了玻璃陶瓷中BO4和SiO_4四面体的存在。

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