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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A study on the structure transformation and luminescence of Eu(III) titanate nanotubes synthesized at various hydrothermal temperatures
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A study on the structure transformation and luminescence of Eu(III) titanate nanotubes synthesized at various hydrothermal temperatures

机译:不同水热温度下合成的钛酸Eu(III)纳米管的结构转变和发光研究

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摘要

Eu(III) titanate (Eu_2Ti_2O_7) nanotubes have been successfully synthesized from sheet titanate (NaEuTiO_4) by hydrothermal method at various reaction temperatures ranging from 110 to 150 deg C With increasing hydrothermal temperature, the morphology varied from two-dimensional nanosheets to one-dimensional nanotubes, which is owing to curling-up movement of nanosheets. At 150 deg C, nanosheets transformed to tube-like structure on the whole. The inner diameters of Eu(III) titanate nanotubes are 30-40 nm and the wall of nanotubes is well crystallized multi-wall structure. The fluorescence properties of products hydrothermally synthesized at various temperatures have been investigated. The results indicate that when the hydrothermal temperature is 150 deg C, the nanotubes obtained can be effectively excited by 395 nm light, and exhibit strong red emission around 616 nm.
机译:在110至150℃的不同反应温度下,通过水热法从钛酸片(NaEuTiO_4)成功地合成了钛酸Eu(III)(Eu_2Ti_2O_7)纳米管。碳纳米管,这是由于纳米片的卷曲运动。在150℃下,纳米片整体上转变为管状结构。 Eu(III)钛酸酯纳米管的内径为30-40 nm,并且纳米管的壁是结晶良好的多壁结构。已经研究了在各种温度下水热合成的产物的荧光性质。结果表明,当水热温度为150℃时,得到的纳米管可以被395 nm的光有效激发,并在616 nm附近表现出强红色发射。

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