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Y3Al5O12:Eu3+在紫外区域发光特性的研究
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Luminescent Properties of Y3Al5O12:Eu3+ under UV Region
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    摘要:

    以金属硝酸盐和稀土氧化物为初始原料,柠檬酸为配位剂,采用柠檬酸-凝胶法在1000 ℃下制备了结晶性较好的掺杂三价铕离子的钇铝石榴石红色荧光粉,该方法比普通固相反应的烧结温度降低了约450 ℃。X射线衍射结果表明,合成的样品具有Y3Al5O12 立方晶系晶体结构,Y3-xEuxAl5O12 (0.025≤x≤0.15)的晶格参数a随x的增大而增大。通过对掺杂Y3-xEuxAl5O12 (0.025≤x≤0.15)材料的激发和发射光谱研究,发现其最有效激发波长为位于240 nm左右的宽吸收带,归属于Eu3+→O2-的电荷转移跃迁(CTS),最强发射峰波长为590 nm,对应于Eu3+的 5D0→7F1跃迁。柠檬酸凝胶法制备样品与固相法制备样品相比较,其发射强度较低,但红橙比较大,色纯度好

    Abstract:

    By using metal nitrates, rare earth oxides as raw materials and citric acid as complexing agent, Y3Al5O12: Eu3+ red phosphors were prepared by a citrate-gel method. The purified crystalline phase of Y3Al5O12 was obtained at 1000 ℃, which is 450 ℃ lower than that of ordinary solid state reaction. The result of XRD indicates that the samples are indexed to cubic symmetry, and the cell parameter a of Y3-xEuxAl5O12 (0.025≤x≤0.15) increases with x value increasing. The photoluminescence of Y3-xEuxAl5O12 (0.025≤x≤0.15) was investigated under UV region, it is found that there is a broad band around 240 nm assigned to the charge transfer transition (CTS) between Eu3+ and O2- in the excitation spectrum. In the emission spectrum, the most intense emission is at the peak of 590 nm corresponding to Eu3+ 5D0→7F1 transition. Compared with the sample synthesized by solid state reaction, the phosphor obtained by citric-gel method shows lower emission intensity, but it has relatively higher red/orange ratio and better color purity

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刘文晶,高 辉,王育华. Y3Al5O12:Eu3+在紫外区域发光特性的研究[J].稀有金属材料与工程,2014,43(1):229~232.[Liu Wenjing, Gao Hui, Wang Yuhua. Luminescent Properties of Y3Al5O12:Eu3+ under UV Region[J]. Rare Metal Materials and Engineering,2014,43(1):229~232.]
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  • 收稿日期:2013-01-21
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  • 在线发布日期: 2014-04-16
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