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Mechanochemical Synthesis of Dy_2TiO_5 Single-Phase Crystalline Nanopowders and Investigation of Their Properties

机译:Dy_2TiO_5单相结晶纳米粉的机械化学合成及其性能研究

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摘要

Crystalline nanopowders of dysprosium titanate were prepared by the mechanochemical synthesis method using anatase and dysprosium oxide as the initial reagents. The duration of the mechanochemical treatment was 180 min. The crystal structure of mechanochemically synthesized Dy~(2)TiO~(5)corresponds to a high-temperature cubic modification. The particle sizes of mechanochemically synthesized dysprosium titanate were 20–30 nm. The properties of the obtained nanopowders and bulk samples consolidated from them were studied. Commercial Dy2TiO5 powders prepared by melting the oxides were used for comparison. It was found that the Dy~(2)TiO~(5)phase decomposes and the metastable DyTiO~(3)phase is formed during the sintering of mechanochemically synthesized nanopowders, which contradicts the classical Dy~(2)O~(3)–TiO~(2)phase diagram. No phase decomposition was observed in the case of sintering of commercial Dy~(2)TiO~(5)powders.
机译:以锐钛矿和氧化为初始试剂,通过机械化学合成法制备了钛酸的结晶纳米粉。机械化学处理的持续时间为180分钟。机械化学合成的Dy〜(2)TiO〜(5)的晶体结构对应于高温立方晶型。机械化学合成的钛酸的粒径为20–30 nm。研究了所获得的纳米粉和由其固结的大块样品的性能。通过熔融氧化物制备的商业Dy2TiO5粉末用于比较。研究发现,在机械化学合成纳米粉的烧结过程中,Dy〜(2)TiO〜(5)相分解,形成亚稳态的DyTiO〜(3)相,这与经典的Dy〜(2)O〜(3)相矛盾。 –TiO〜(2)相图。在烧结Dy〜(2)TiO〜(5)粉体的过程中,没有观察到相分解。

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