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首页> 外文期刊>International Journal of Quantum Chemistry >The crystal structure, vibrational and luminescence properties of the nanocrystalline KEu(WO4)(2) and KGd(WO4)(2):Eu3+ obtained by the Pechini method
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The crystal structure, vibrational and luminescence properties of the nanocrystalline KEu(WO4)(2) and KGd(WO4)(2):Eu3+ obtained by the Pechini method

机译:用Pechini方法获得的纳米晶体KEu(WO4)(2)和KGd(WO4)(2):Eu3 +的晶体结构,振动和发光性质

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The luminescent nanocrystalline KEu(WO4)(2) and KGd0.98Eu0.02(WO4)(2) have been prepared by the Pechini method. X-ray diffraction, infrared and Raman spectroscopy as well as optical spectroscopy were Used to characterise the obtained materials. The crystal structure of KEu(WO4)(2) was refined in 12/c space group indicating the isostructurality to KGd(WO4)(2). The size of the crystalline grains depended on the annealing temperature, increasing with the increase of the temperature. The average size of crystallites of both crystals formed at 540 degrees C was about 50 nm. Vibrational spectra showed noticeable changes as a function of size due to, among others, phonon confinement effect. Luminescence studies did not reveal significant changes for the nanocrystallites with the lowest grain size in comparison with the bulk material. The differences observed in luminescence spectra in form of slight inhomogeneous broadening of the spectral lines and increase of the hypersensitive l(0.2)/l(0-1) ratio point to very low symmetry of Eu3+ ions and change of the polarisation of the local vicinities of Eu3+. X-ray diffraction, vibrational and optical studies showed that the structure of the synthesised nanocrystalline KEu(WO4)(2) and KGd(WO4)(2):Eu is nearly the same as that found for the bulk material. The size-driven phase transitions were established for both compounds. (c) 2008 Elsevier Inc. All rights reserved.
机译:采用Pechini方法制备了发光纳米晶体KEu(WO4)(2)和KGd0.98Eu0.02(WO4)(2)。 X射线衍射,红外和拉曼光谱以及光学光谱被用来表征获得的材料。 KEu(WO4)(2)的晶体结构在12 / c空间群中得到了细化,表明与KGd(WO4)(2)的同构性。晶粒的尺寸取决于退火温度,随温度的升高而增加。在540℃下形成的两种晶体的微晶的平均尺寸为约50nm。振动光谱显示出明显的变化,这是由于声子约束效应引起的尺寸变化。与块状材料相比,发光研究并未显示出具有最小晶粒尺寸的纳米微晶的显着变化。发光光谱中观察到的差异以光谱线的轻微不均匀加宽和超敏l(0.2)/ l(0-1)比率的增加表示Eu3 +离子的对称性很低以及局部附近极化的变化Eu3 +。 X射线衍射,振动和光学研究表明,合成的纳米晶体KEu(WO4)(2)和KGd(WO4)(2):Eu的结构与散装材料几乎相同。两种化合物都建立了尺寸驱动的相变。 (c)2008 Elsevier Inc.保留所有权利。

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