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首页> 外文期刊>Physica, B. Condensed Matter >Photoluminescence and phosphorescence properties of Sr1-xZn2-y(PO4)(2) : Eu-x(2+), Mn-y(2+) phosphor for UV-based white-LEDs
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Photoluminescence and phosphorescence properties of Sr1-xZn2-y(PO4)(2) : Eu-x(2+), Mn-y(2+) phosphor for UV-based white-LEDs

机译:Sr1-xZn2-y(PO4)(2):Eu-x(2 +),Mn-y(2+)荧光粉用于基于UV的白光LED的光致发光和磷光性能

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Sr1-xZn2-y(PO4)(2) : Eu-x(2+), Mn-y(2+) (SZP: Eu-x(2+),Mn-y(2+)) phosphors (x = 0, 0.01 and y = 0,0.01) were prepared by using a stoichiometric solid-state reaction method and their photoluminescence and phosphorescence decay properties were investigated. The emission spectrum of SrZn2(PO4)(2):Eu-0.01(2+), Mn-0.01(2+) measured under 400 nm excitation was composed of the violettish blue and the emerald green emissions centered at 421 and 547 nm, respectively. The excitation wavelength of the emission peak at 547 nm was about 421 nm in the excitation spectrum of SZP:Mn-0.01(2+). Since, this value is equal to the transition energy of Eu2+, the energy transfer from Eu2+ to Mn2+ in SZP:Eu-0.01(2+), Mn-0.01(2+) phosphor has been demonstrated. The CIE chromaticity coordinates of SZP:Eu-0.01(2+), Mn-0.01(2+) phosphor were (0.330, 0.328) under the excitation wavelength 375 nm at room temperature. The phosphorescence from SZP:Eu-0.01(2+), Mn-0.01(2+) could be seen by naked eyes for few seconds and it has persisted for about 4.4 h while monitoring by using a PMT spectrometer. Therefore, SZP: Eu-x(2+),Mn-y(2+) phosphor may be a potential candidate for the UV-based white light-emitting diodes (LEDs).
机译:Sr1-xZn2-y(PO4)(2):Eu-x(2+),Mn-y(2+)(SZP:Eu-x(2 +),Mn-y(2+))荧光粉(x =通过化学计量的固态反应方法制备了0,0.01和y = 0,0.01),并研究了它们的光致发光和磷光衰减特性。在400 nm激发下测量的SrZn2(PO4)(2):Eu-0.01(2 +),Mn-0.01(2+)的发射光谱由紫蓝色和以421和547 nm为中心的翠绿色发射组成,分别。在SZP:Mn-0.01(2+)的激发光谱中,在547nm处的发射峰的激发波长为约421nm。由于该值等于Eu2 +的跃迁能,因此在SZP:Eu-0.01(2 +),Mn-0.01(2+)荧光粉中已证明了从Eu2 +到Mn2 +的能量转移。在室温下,激发波长为375 nm时,SZP:Eu-0.01(2 +),Mn-0.01(2+)荧光粉的CIE色度坐标为(0.330,0.328)。可以用肉眼观察到SZP:Eu-0.01(2 +),Mn-0.01(2+)的磷光,并持续了约4.4 h,同时使用PMT光谱仪进行了监测。因此,SZP:Eu-x(2 +),Mn-y(2+)荧光粉可能是基于UV的白色发光二极管(LED)的潜在候选材料。

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