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Cathodoluminescence of Nanocrystalline Y2O3:Eu3+ with Various Eu3+ Concentrations

机译:不同Eu3 +浓度的Y2O3:Eu3 +纳米晶体的阴极发光

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Herein a study on the preparation and cathodoluminescence of monosized spherical nanoparticles of Y2O3:Eu3+ having a Eu3+ concentration that varies between 0.01 and 10% is described. The luminous efficiency and decay time have been determined at low a current density, whereas cathodoluminescence-microscopy has been carried out at high current density, the latter led to substantial saturation of certain spectral transitions. A novel theory is presented to evaluate the critical distance for energy transfer from Eu3+ ions in S6 to Eu3+ ions in C2 sites. It was found that Y2O3:Eu3+ with 1-2% Eu3+ has the highest luminous efficiency of 161m/w at 15keV electron energy. Decay times of the emission from 5D0 (C2) and 5D1 (C2) and 5D0 (S6) levels were determined. The difference in decay time from the 5D0 (C2) and 5D1 (C2) levels largely explained the observed phenomena in the cathodoluminescence-micrographs recorded with our field emission scanning electron microscope. (C) The Author(s) 2014. Published by ECS. All rights reserved.
机译:本文描述了Eu3 +浓度在0.01%至10%之间变化的Y2O3:Eu3 +球形纳米颗粒的制备和阴极发光的研究。已经在低电流密度下确定了发光效率和衰减时间,而在高电流密度下进行了阴极荧光显微镜检查,后者导致了某些光谱跃迁的充分饱和。提出了一种新的理论来评估从S6中的Eu3 +离子到C2位中的Eu3 +离子能量转移的临界距离。发现具有1-2%Eu3 +的Y2O3:Eu3 +在15keV电子能量下具有最高的发光效率161m / w。确定了从5D0(C2)和5D1(C2)和5D0(S6)发射的衰减时间。与5D0(C2)和5D1(C2)的衰减时间的差异很大程度上解释了我们场发射扫描电子显微镜在阴极发光显微照片中观察到的现象。 (C)作者2014。由ECS出版。版权所有。

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