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用于白光紫外发光二极管的单相Na(0.34)Ca(0.66 - x - y)Al(1.66)Si(2.34)O8:xEu2 +,yMn2 +(x = 0.07)荧光粉中从蓝光到白光的可调发射

Tunable emission from blue to white light in single-phase Na(0.34)Ca(0.66-x-y)Al(1.66)Si(2.34)O8:xEu2+,yMn2+ (x = 0.07) phosphor for white-light UV LEDs.

作者信息

Lee Ga-yeon, Im Won Bin, Kirakosyan Artavazd, Cheong Sang Hoon, Han Ji Yeon, Jeon Duk Young

机构信息

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-701, South Korea.

出版信息

Opt Express. 2013 Feb 11;21(3):3287-97. doi: 10.1364/OE.21.003287.

Abstract

A series of single-phased emission-tunable Na(0.34)Ca(0.66)Al(1.66)Si(2.34)O(8):Eu(2+),Mn(2+) phosphors were successfully synthesized by a wet-chemical synthesis method. Photoluminescence excitation (PLE) spectra indicate that the phosphor can be efficiently excited by UV radiation from 250 to 420 nm. Also, NCASO:Eu(2+),Mn(2+) phosphor exhibit a broad blue emission band at 440 nm and an orange emission band at 570 nm, which originate from Eu(2+) and Mn(2+) ions, respectively. Therefore, overall emission color can be tuned from blue to white by increasing the concentration of Mn(2+) ions in the host lattice utilizing energy transfer from Eu(2+) to Mn(2+) ions. This energy transfer phenomenon was demonstrated to be a resonant type through dipole-dipole interaction determined with the help of PL spectra, decay time measurement, and energy transfer efficiency of the phosphor. These results indicate that NCASO:Eu(2+),Mn(2+) can be a promising single-phased white-emitting phosphor for white-light UV LEDs.

摘要

通过湿化学合成方法成功合成了一系列单相发射可调的Na(0.34)Ca(0.66)Al(1.66)Si(2.34)O(8):Eu(2+),Mn(2+)荧光粉。光致发光激发(PLE)光谱表明,该荧光粉可被250至420 nm的紫外辐射有效激发。此外,NCASO:Eu(2+),Mn(2+)荧光粉在440 nm处呈现出一个宽的蓝色发射带,在570 nm处呈现出一个橙色发射带,分别源于Eu(2+)和Mn(2+)离子。因此,通过利用从Eu(2+)到Mn(2+)离子的能量转移,增加主体晶格中Mn(2+)离子的浓度,可以将整体发射颜色从蓝色调整为白色。通过借助PL光谱、衰减时间测量和荧光粉的能量转移效率确定的偶极-偶极相互作用,证明这种能量转移现象是共振型的。这些结果表明,NCASO:Eu(2+),Mn(2+)可以成为用于白光紫外发光二极管的有前途的单相白色发射荧光粉。

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