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Analysis of Eu3+Emission from Mg2TiO4Nanoparticles by Judd-Ofelt Theory

机译:Judd-Ofelt理论分析Mg2TiO4纳米颗粒的Eu3 +排放

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Eu3+doped Mg2TiO4(2 at% of Eu) nanoparticles which are 5 to 10 nm in diameter are prepared by Pechini-type polymerized complex route followed with the calcination in the temperature range from 400°C to 700°C. Emission spectra display characteristicD05→F7J  (J=0, 1, 2, 3, and 4) spin forbidden f-f electronic transitions of the Eu3+ions with the most pronounced emission coming fromD05→F72  transition and with the emission decays varying between 0.57 and 0.87 ms for samples prepared at different temperatures. Judd-Ofelt theoretical analysis of the emission spectra of Eu3+ions was performed, which allowed calculating radiative and nonradiative emission probabilities, Judd-Ofelt intensity parameters, and the quantum efficiency of the Eu3+emission in the Mg2TiO4nanoparticles. The analyses showed the existence of high asymmetry around the metal ion sites. Also, the largest quantum efficiency of emission of 58.5% is found in nanoparticles prepared at 600°C.
机译:通过Pechini型聚合配合物路线,然后在400°C至700°C的温度范围内进行煅烧,制备出直径为5至10μm的Eu3 +掺杂的Mg2TiO4(Eu的2atat%)纳米颗粒。发射光谱显示特征D05→F7J(J = 0、1、2、3和4)自旋禁止Eu3 +离子的ff电子跃迁,最明显的发射来自D05→F72跃迁,且发射衰减在0.57和0.87之间变化不同温度下制备的样品的毫秒数。对Eu3 +离子的发射光谱进行Judd-Ofelt理论分析,可以计算Mg2TiO4纳米粒子中的辐射和非辐射发射概率,Judd-Ofelt强度参数以及Eu3 +发射的量子效率。分析表明,在金属离子位点附近存在高度不对称性。同样,在600°C制备的纳米颗粒中发现最大的发射量子效率为58.5%。

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