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Properties of the amorphous-nanocrystalline Gd2O3 powder prepared by pulsed electron beam evaporation

机译:脉冲电子束蒸发法制备的非晶纳米晶Gd2O3粉的性能

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摘要

An amorphous-nanocrystalline Gd2O3 powder with a specific surface area of 155 m2/g has been prepared using pulsed electron beam evaporation in vacuum. The nanopowder consists of 20- to 500-nm agglomerates formed by crystalline nanoparticles (3-12 nm in diameter) connected by amorphous-nanocrystalline strands. At room temperature, the Gd2O3 nanopowder exhibits a paramagnetic behavior. The phase transformations occurring in the powder have been investigated using differential scanning calorimetry and thermogravimetry (40-1400°C). The amorphous phase of the nanopowder is thermally stable up to a temperature of 1080°C. It has been found that the amorphous phase has an inhibitory effect on the temperature of the polymorphic transformation from the cubic phase into the monoclinic phase. It has been revealed that, compared with the microcrystalline powder, the Gd2O3 nanopowder is characterized by a complete quenching of photoluminescence. © 2013 Pleiades Publishing, Ltd.
机译:使用真空中的脉冲电子束蒸发法制备了比表面积为155 m2 / g的无定形纳米晶体Gd2O3粉末。纳米粉末由20-500 nm的团聚物组成,这些团聚物由无定形-纳米晶体链连接的结晶纳米颗粒(直径3-12 nm)形成。在室温下,Gd2O3纳米粉表现出顺磁行为。已使用差示扫描量热法和热重分析法(40-1400°C)研究了粉末中发生的相变。纳米粉末的非晶相在高达1080°C的温度下具有热稳定性。已经发现,非晶相对从立方相到单斜晶相的多晶相转变的温度具有抑制作用。已经发现,与微晶粉末相比,Gd2O3纳米粉的特征在于光致发光的完全淬灭。 ©2013 Pleiades Publishing,Ltd.

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