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在氧化气氛中制备的Eu(3+)掺杂的铯沸石(CsAlSi2O6)中,Eu(3+)→Eu(2+)的异常还原及缺陷中心

Abnormal reduction, Eu(3+) → Eu(2+), and defect centers in Eu(3+)-doped pollucite, CsAlSi2O6, prepared in an oxidizing atmosphere.

作者信息

Xie Hongde, Lu Juan, Guan Ying, Huang Yanlin, Wei Donglei, Seo Hyo Jin

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University , Suzhou 215123, China.

出版信息

Inorg Chem. 2014 Jan 21;53(2):827-34. doi: 10.1021/ic402169w. Epub 2013 Dec 24.

Abstract

Eu-doped pollucite CsAlSi2O6 was synthesized by the sol-gel method and heated in an air atmosphere. The crystal structure and the microstructure of the phosphors were investigated by X-ray powder diffraction and SEM images, respectively. The photoluminescence spectra and temperature dependent decay curves were measured. An abnormal reduction phenomenon of Eu(3+) → Eu(2+) was reported when Eu(3+) ions were doped in alkaline metal cation sites in CsAlSi2O6 prepared in an oxidizing atmosphere. The abnormal mechanism was discussed on the basis of the charge compensation model and a rigid three-dimensional framework structure of CsAlSi2O6. The luminescence color centers were investigated by luminescence decay lifetimes and thermal stabilities of Eu(2+) ions. The defect complexes of [(Eu(3+)Cs)(••)-2VCs'] or [(Eu(3+)Cs)(••)-Oi″] induced by the substitution of Eu(3+) on Cs(+) were suggested in the lattices. Eu(2+) ions could be regarded as Eu(3+) ions combining with the released electrons from defects Oi″ or VCs' in close vicinity of Eu(3+) (Eu(3+) + e); the electrons cannot enter the atom track of Eu(2+) presenting luminescence of Eu(2+) ions. The results indicate that several defect traps can be attributed to the abnormal reduction mechanism of Eu(3+) to Eu(2+) ions in a matrix.

摘要

采用溶胶 - 凝胶法合成了铕掺杂的铯沸石CsAlSi₂O₆,并在空气气氛中进行加热。分别通过X射线粉末衍射和扫描电子显微镜图像研究了荧光粉的晶体结构和微观结构。测量了光致发光光谱和温度依赖的衰减曲线。报道了在氧化气氛中制备的CsAlSi₂O₆中,当Eu(3+)离子掺杂在碱金属阳离子位点时,出现Eu(3+)→Eu(2+)的异常还原现象。基于电荷补偿模型和CsAlSi₂O₆的刚性三维骨架结构对异常机理进行了讨论。通过Eu(2+)离子的发光衰减寿命和热稳定性研究了发光色心。推测在晶格中存在由Eu(3+)取代Cs(+)诱导产生的[(Eu(3+)Cs)(••)-2VCs']或[(Eu(3+)Cs)(••)-Oi″]缺陷络合物。Eu(2+)离子可视为Eu(3+)离子与Eu(3+)附近缺陷Oi″或VCs'释放的电子结合(Eu(3+) + e);电子无法进入呈现Eu(2+)离子发光的Eu(2+)原子轨道。结果表明,几种缺陷陷阱可归因于基质中Eu(3+)向Eu(2+)离子的异常还原机制。

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