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Facile Synthesis of Perovskite-Structured Powders Using Barite–Celestite Ore under Hydrothermal Alkaline Conditions

机译:在水热碱性条件下使用重晶石 - 天青石矿石简便合成钙钛矿结构粉末

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摘要

Barite–celestite (BC) crystals were treated in highly concentrated alkaline hydrothermal fluid (5 M KOH) coexisting with a Ti(OH)₄·4.5H₂O gel to produce SrTiO₃ particles between 150 and 250 °C for several intervals between 6 h and 96 h. The BC transformation was initiated at a lower temperature (150 °C) and the total precursors consumption was completed at 250 °C for 96 h, resulting only in the crystallization of SrTiO₃ particles. Different temperatures of reaction (≤200 °C) lead to variations in morphology and particle size of the SrTiO₃ . The crystal growth of faceted cubic agglomerates was achieved at 250 °C, and it is provoked by the Oswald ripening mechanism. The release of barium to the hydrothermal fluid from the precursor occurred simultaneously with the transformation process. A low value of activation energy required for the single-step transformation of the BC plates into SrTiO₃ particles was observed (26.33 kJ mol‾¹), under static hydrothermal conditions.
机译:将重晶石-天青石(BC)晶体在高浓度碱性热液(5 M KOH)中与Ti(OH)3·4.5H 2 O凝胶共存,以150至250°C的温度在6 h至96的几个间隔内产生SrTiO 3颗粒。 H。 BC转化在较低的温度(150°C)下开始,并且前体的总消耗量在250°C下完成96 h,仅导致SrTiO 3颗粒结晶。不同的反应温度(≤200°C)导致SrTiO 3的形态和粒径变化。多面立方附聚物的晶体生长在250°C时完成,这是由奥斯瓦尔德熟化机制引起的。钡从前驱体释放到热液中与转化过程同时发生。在静态水热条件下,观察到BC板一步转化为SrTiO 3颗粒所需的活化能值很低(26.33 kJ mol -1)。

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