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Preparation of Yb2O3 submicron- and nano-materials via electrospinning

机译:静电纺丝法制备Yb2O3亚微米和纳米材料

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Yb2O3 nano- and submicron-materials were prepared via electrospinning an homogeneous solution obtained by mixing ytterbium acetylacetonate with cellulose acetate in 1:1 acetyl acetone (2,4-pentanodione) and glacial acetic acid, followed by heat treatments for 2 h in air atmosphere at temperatures from 550 degrees C to 850 degrees C. The electrospinning procedure was carried out at 15 kV, with a tip to collector distance of 10 cm. Thermogravimetric analysis of the electrospun materials indicates their complete decomposition and oxidation below 425 degrees C, with a total weight loss of similar to 92%. The Williamson-Hall and the Brunauer-Emmett-Teller methods, and scanning and transmission electron microscopy observations were used to characterize the grain size and morphology of the samples. An initial very small grain size (< 100 nm) and high porosity were observed in the samples treated at 550 degrees C, which is related to the important total weight loss. Further heat treatments at higher temperatures lead to the grain growth and agglomeration, increasing the average size to submicron dimensions. Due to their easy grain size tuning, these materials are particularly suitable for applications in fiber amplifiers, fiber optic technologies and lasers. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:Yb2O3纳米材料和亚微米材料是通过静电纺制均匀溶液而制得的,该溶液是将乙酰丙酮与醋酸纤维素在1:1乙酰丙酮(2,4-戊二酮)和冰醋酸中混合,然后在空气中热处理2 h在550℃至850℃的温度下进行。静电纺丝过程在15kV下进行,尖端至集电极的距离为10cm。电纺材料的热重分析表明,在425摄氏度以下,它们会完全分解和氧化,总重量损失约为92%。 Williamson-Hall和Brunauer-Emmett-Teller方法以及扫描和透射电子显微镜观察被用来表征样品的晶粒大小和形态。在550℃下处理的样品中观察到初始的非常小的晶粒尺寸(<100 nm)和高孔隙率,这与重要的总重量损失有关。在更高的温度下进行进一步的热处理会导致晶粒长大和结块,从而将平均尺寸增加到亚微米尺寸。由于易于调节晶粒尺寸,这些材料特别适用于光纤放大器,光纤技术和激光器。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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