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Eu2+ 和 Mn(2+)-共激活 Ba3Gd(PO4)3 橙黄色发光荧光粉,用于可调光色调的紫外激发白光 LED。

Eu2+ & Mn(2+)-coactivated Ba3Gd(PO4)3 orange-yellow-emitting phosphor with tunable color tone for UV-excited white LEDs.

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.

出版信息

Chemphyschem. 2013 Jan 14;14(1):192-7. doi: 10.1002/cphc.201200836. Epub 2012 Nov 19.

Abstract

A novel orange-yellow-emitting Ba(3)Gd(PO(4))(3):xEu(2+),yMn(2+) phosphor is prepared by high-temperature solid-state reaction. The crystal structure of Ba(3)Gd(PO(4))(3):0.005 Eu(2+),0.04 Mn(2+) is determined by Rietveld refinement analysis on powder X-ray diffraction data, which shows that the cations are disordered on a single crystallographic site and the oxygen atoms are distributed over two partially occupied sites. The photoluminescence excitation spectra show that the developed phosphor has an efficient broad absorption band ranging from 230 to 420 nm, perfectly matching the characteristic emission of UV-light emitting diode (LED) chips. The emission spectra show that the obtained phosphors possess tunable color emissions from yellowish-green through yellow and ultimately to reddish-orange by simply adjusting the Mn(2+) content (y) in Ba(3)Gd(PO(4))(3):0.005 Eu(2+),y Mn(2+) host. The tunable color emissions origin from the change in intensity between the 4f-5d transitions in the Eu(2+) ions and the (4)T(1)-(6)A(1) transitions of the Mn(2+) ions through the energy transfer from the Eu(2+) to the Mn(2+) ions. In addition, the mechanism of the energy transfer between the Eu(2+) and Mn(2+) ions are also studied in terms of the Inokuti-Hirayama theoretical model. The present results indicate that this novel orange-yellow-emitting phosphor can be used as a potential candidate for the application in white LEDs.

摘要

一种新型的橙黄色发射 Ba(3)Gd(PO(4))(3):xEu(2+),yMn(2+) 荧光粉是通过高温固相反应制备的。Ba(3)Gd(PO(4))(3):0.005 Eu(2+),0.04 Mn(2+)的晶体结构通过粉末 X 射线衍射数据的 Rietveld 精修分析确定,结果表明阳离子在单个晶位上无序,氧原子分布在两个部分占据的位置上。光致发光激发光谱表明,所开发的荧光粉具有从 230 到 420nm 的高效宽吸收带,与紫外发光二极管 (LED) 芯片的特征发射完美匹配。发射光谱表明,通过简单调整 Ba(3)Gd(PO(4))(3):0.005 Eu(2+),y Mn(2+)基质中 Mn(2+)含量 (y),获得的荧光粉可以实现从黄绿色到黄色再到橙红色的可调谐颜色发射。可调谐颜色发射源于 Eu(2+)离子的 4f-5d 跃迁和 Mn(2+)离子的 (4)T(1)-(6)A(1)跃迁之间强度的变化,通过 Eu(2+)离子向 Mn(2+)离子的能量转移。此外,还根据 Inokuti-Hirayama 理论模型研究了 Eu(2+)和 Mn(2+)离子之间能量转移的机制。研究结果表明,这种新型的橙黄色发射荧光粉可以作为应用于白光 LED 的潜在候选材料。

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