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用于固态照明的 Eu(3+) 掺杂 Li6Y(BO3)3 荧光粉的发光研究

Luminescence study of Eu(3+) doped Li6 Y(BO3 )3 phosphor for solid-state lighting.

作者信息

Yawalkar Mrunal M, Zade G D, Dabre K V, Dhoble S J

机构信息

Department of Physics, R.T.M. Nagpur University, Nagpur -, 440033, India.

Department of Physics J. N. Arts, Commerce & Science College, Wadi, Nagpur -, 440023, India.

出版信息

Luminescence. 2016 Jun;31(4):1037-42. doi: 10.1002/bio.3006. Epub 2015 Aug 26.

Abstract

In this study, Li6 Y1-x Eux (BO3 )3 phosphor was successfully synthesized using a modified solid-state diffusion method. The Eu(3+) ion concentration was varied at 0.05, 0.1, 0.2, 0.5 and 1 mol%. The phosphor was characterized for phase purity, morphology, luminescent properties and molecular transmission at room temperature. The XRD pattern suggests a result closely matching the standard JCPDS file (#80-0843). The emission and excitation spectra were followed to discover the luminescence traits. The excitation spectra indicate that the current phosphor can be efficiently excited at 395 nm and at 466 nm (blue light) to give emission at 595 and 614 nm due to the (5) D0  → (7) Fj transition of Eu(3+) ions. Concentration quenching was observed at 0.5 mol% Eu(3+) in the Li6 Y1-x Eux (BO3 )3 host lattice. Strong red emission with CIE chromaticity coordinates of phosphor is x = 0.63 and y = 0.36 achieved with dominant red emission at 614 nm the (5) D0  → (7)  F2 electric dipole transition of Eu(3+) ions. The novel Li6 Y1-x Eux (BO3 )3 phosphor may be a suitable red-emitting component for solid-state lighting using double-excited wavelengths, i.e. near-UV at 395 nm and blue light at 466 nm. Copyright © 2015 John Wiley & Sons, Ltd.

摘要

在本研究中,采用改进的固态扩散法成功合成了Li6Y1-xEux(BO3)3荧光粉。Eu(3+)离子浓度在0.05、0.1、0.2、0.5和1mol%之间变化。对该荧光粉在室温下的相纯度、形貌、发光性能和分子传输进行了表征。XRD图谱表明其结果与标准JCPDS文件(#80-0843)密切匹配。通过跟踪发射光谱和激发光谱来发现发光特性。激发光谱表明,由于Eu(3+)离子的(5)D0→(7)Fj跃迁,当前荧光粉在395nm和466nm(蓝光)处可被有效激发,从而在595和614nm处产生发射。在Li6Y1-xEux(BO3)3主体晶格中,当Eu(3+)浓度为0.5mol%时观察到浓度猝灭现象。荧光粉的CIE色度坐标为x = 0.63和y = 0.36,在614nm处有占主导地位的红色发射,这是由Eu(3+)离子的(5)D0→(7)F2电偶极跃迁实现的。新型Li6Y1-xEux(BO3)3荧光粉可能是一种适用于双激发波长固态照明的红色发光组件,即395nm的近紫外光和466nm的蓝光。版权所有©2015约翰威立父子有限公司。

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