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机构地区:[1]洛阳理工学院材料科学与工程学院,河南洛阳471023
出 处:《发光学报》2016年第4期392-398,共7页Chinese Journal of Luminescence
基 金:国家自然科学基金(51002070);洛阳市科技发展计划(1401051A)资助项目
摘 要:采用熔融淬冷法制备了性能优越的Eu/Tm/Tb单掺、双掺和三掺的硼硅酸盐玻璃。测试了样品的激发和发射光谱,计算了CIE色坐标,研究了紫外激发下Eu/Tm/Tb掺杂的硼硅酸盐玻璃的发光性能。结果表明:在361 nm激发下,随着Tm^(3+)加入到Eu_2O_3掺杂的硼硅酸盐样品中,观察到Tm^(3+)的459 nm(1D_2→3F_4)锐线特征发射峰,同时由于Eu^(3+),Eu2+→Tm^(3+)的能量传递的存在降低了Eu2+的437 nm宽带峰及Eu^(3+)的589nm(5D0→7F1)和612 nm(5D_0→7F_2)的特征发射峰强度。在377 nm激发下,Eu/Tm/Tb三掺样品能够同时出现红、绿和蓝光。调节Eu2O3的含量能有效改变发光玻璃的发光强度和颜色,最终得到色坐标为(0.33,0.386 7)的发光玻璃。Eu / Tm / Tb-doped singly,doubly and triply borosilicate glasses were prepared using a conventional melting-quenching method. The luminescent properties of Eu / Tm / Tb-doped samples under the UV excitation were investigated in detail by measuring the excitation and emission spectra and calculating CIE chromaticity coordinates. The results show that the sharp emission peak centered at 459 nm originating from1D2→3F4of Tm^3+is observed,and the characteristic emission intensity centered at 437 nm ascribing to the broad peak of Eu^2 +,589 nm(5D0→7F1) and 612 nm(5D0→7F2)of Eu^3+is reduced due to the energy transfer from Eu^3+,Eu^2 +to Tm^3+ion. Red,green and blue light can be observed in Eu / Tm / Tb-doped triply samples simultaneously under the excitation of 377 nm. The luminescent intensity and color of borosilicate glasses might be changed by adjusting Eu2O3 content,and the sample with CIE chromaticity coordinates( 0. 33,0. 386 7) are obtained.
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