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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Red Shift of CT-Band in Cubic Y2O3:Eu3+ upon Increasing the Eu3+ Concentration
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Red Shift of CT-Band in Cubic Y2O3:Eu3+ upon Increasing the Eu3+ Concentration

机译:Eu3 +浓度增加时,立方Y2O3:Eu3 +中CT带的红移

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摘要

In this article we describe the redshift of the charge transfer band of nanosized cubic (Y1-xEux)(2)O-3 upon increasing the Eu3+ concentration. This redshift amounts to 0.43 eV (25 nm) in going from 0.1 Mol % Eu3+ to 100 Mol % (which is pure Eu2O3). The charge transfer band consists of two broad sub-bands; both shift almost parallel with the Eu3+ concentration and are related to the two symmetry sites for the cation, C-2 and C-3i, in the bixbyite-type lattice. The area ratio of the bands is 3:1 and is the first direct evidence for the population of the two lattice sites by the Eu3+ cations being in accord with the crystal structure ratio. A model is presented that quantitatively describes the redshift of the charge transfer band of (Y1-xEux)(2)O-3. This model is based on the Madelung energy of the transferred charge. Other models are briefly discussed, but are discarded. (C) The Author(s) 2016. Published by ECS.
机译:在本文中,我们描述了随着Eu3 +浓度的增加,纳米立方(Y1-xEux)(2)O-3的电荷转移带发生红移。从0.1 Mol%Eu3 +到100 Mol%(纯Eu2O3),该红移等于0.43 eV(25 nm)。电荷转移带由两个宽的子带组成。它们都几乎与Eu3 +浓度平行移动,并且与方铁矿型晶格中阳离子C-2和C-3i的两个对称位置有关。带的面积比为3∶1,并且是Eu 3+阳离子与晶体结构比一致的两个晶格位点的种群的第一个直接证据。提出了一个定量描述(Y1-xEux)(2)O-3电荷转移带的红移的模型。该模型基于转移电荷的马德隆能量。简要讨论了其他模型,但将其丢弃。 (C)作者2016。由ECS出版。

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