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Eu^2+在Sr4Al14O25基磷光體中能量傳遞行為的研究
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TQ422

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清華大學(xué)基礎(chǔ)研究基金項目(JC2002036)


Studies on Energy Transfer of Eu2+ Ions in the Sr4Al14O25-Based Phosohor
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    摘要:

    合成了3種不同Eu摻雜量的Sr4Al14O25,Dy^3 發(fā)光粉體,發(fā)現(xiàn)當(dāng)Eu摻雜量低于0.012mol時,發(fā)射光譜中存在2個主發(fā)射峰,分別位于407nm和494nm。隨著Eu摻雜濃度增加,407nm發(fā)射峰逐漸消失,而494nm主發(fā)射峰增強。結(jié)合Sr4Al14O25,晶體結(jié)構(gòu)和激發(fā).發(fā)射光譜,建立了2種Eu發(fā)光中心之間的能量傳遞模型,對實驗現(xiàn)象進行了合理的解釋。余輝衰減曲線測試結(jié)果表明,3種磷光體試樣均具有長余輝性能,尤其Sr4Al14O25:Eu0.0l2,Dy0.024試樣,其余輝時間在人眼可視亮度水平可持續(xù)20h以上。

    Abstract:

    Three kinds of Long afterglow Sr4Al14O25: Eu2+, Dy3+ phosphor samples with various Eu2+ contents were synthesized. When the concentration of doped Eu2+ in the host was less than 0.012 mol, the emission spectra of Sr4Al14O25: Eu2+, Dy3+ has two peaks at 407 nm and 494 nm respectively, which is ascribed to two types of Eu2+ sites existing in Sr4Al14O25 matrices crystal. But the 407nm emission peak disappeared slowly with the concentration of doped Eu2+ increasing. Based on the Sr4Al14O25 crystal structure, excitation and emission spectra, the energy transfer model has been established, and a reasonable explanation was given for the experimental phenomena. In addition, the decay curves indicate that these Sr4Al14O25: Eu2+, Dy3+ phosphors have obviously a long afterglow. Especially in phosphor, the afterglow can last over 20 h in the light perception of the human eye.

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林元華 南策文 王海峰 陳德樸 蔡寧 王建飛. Eu^2+在Sr4Al14O25基磷光體中能量傳遞行為的研究[J].稀有金屬材料與工程,2004,33(6):606~608.[Lin Yuanhua, Nan Cewen, Wang Haifeng, Chen Depu, Cai Ning, Wang Jianfei. Studies on Energy Transfer of Eu2+ Ions in the Sr4Al14O25-Based Phosohor[J]. Rare Metal Materials and Engineering,2004,33(6):606~608.]
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  • 最后修改日期:2002-10-28
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