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BaTiO_3 Structure as a Function of the Preparation Method

机译:Batio_3结构作为制备方法的功能

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Barium titanate is synthesized by sol-gel and hydrothermal methods. The sol-gel technique allows the preparation of amorphous powders which are subsequently subjected to appropriate time-temperature programs and barium titanate is precipitated. The allotropic modification of the barium titanate from the obtained sol-gel powder depends on the temperature applied. It is cubic for heat treatment at 900 °C for 4 h, while in case of crystallization at 1100 °C for 3 h the tetragonal modification occurs as witnessed by X-ray diffraction analyses. Barium titanate is also successfully prepared by the hydrothermal method which results in the crystallization of the cubic allotrope as observed by X-ray diffraction. The microstructure of the formed barium titanate powders is imaged by scanning electron microscopy and reveals the formation of large fraction of crystals which are polydispersed for the samples prepared via sol-gel method and tend to agglomerate in case of hydrothermal synthesis. The infrared spectroscopy investigation of the powders obtained by both synthesis methods shows the presence of the absorption peak characteristic for the barium titanate phase in the range 540-580 cm~(-1).
机译:钛酸钡由溶胶 - 凝胶和水热方法合成。溶胶 - 凝胶技术允许制备随后进行适当的时间温度方案的无定形粉末,沉淀钛酸钡。从所得溶胶 - 凝胶粉末的钛酸钡的同种异体改性取决于施加的温度。在900℃下热处理4小时的立方,而在1100℃下结晶的情况下,通过X射线衍射分析所目的,发生四边形改性。通过水热法成功地制备钛酸钡,其导致由X射线衍射观察到的立方同质渗透的结晶。通过扫描电子显微镜对形成的钛酸钡粉末的微观结构进行成像,并揭示大部分晶体的形成,该晶体是通过溶胶 - 凝胶法制备的样品的多分离,并且在水热合成的情况下倾向于附聚。通过两个合成方法获得的粉末的红外光谱研究表明,在540-580cm〜(-1)范围内的钛酸钡相的吸收峰特征存在。

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