首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural and optical studies on Dy3+:Tb3+ co-doped zinc leadfluoro-borophosphate glasses for white light applications
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Structural and optical studies on Dy3+:Tb3+ co-doped zinc leadfluoro-borophosphate glasses for white light applications

机译:DY3 +:TB3 +共掺杂锌氟磷酸玻璃的结构和光学研究适用于白光应用

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A new series of Dy3+:Tb3+ co-doped zinc leadfluoro-borophosphate glasses were prepared by varying Tb3+ ions concentration through melt quenching technique. Influence of Tb3+ ions concentration on the structural and spectroscopic properties of Dy3+:Tb3+ co-doped title glasses were explored through FTIR, Raman, optical absorption, luminescence and decay measurements. The phonon vibrational energy of the chosen glass host is found to be 998 cm(-1) through Raman spectrum. Dy3+ ions act as sensitizer to Tb3+ ions emission which originates from the D-5(4) metastable state of Tb3+ ions through non-radiative energy transfer with a maximum efficiency of 44%. At higher Tb3+ ions concentration, the F-4(9/2) metastable state of the Dy3+ ions can also be mutually sensitized by Tb3+ ions which inturn increases the lifetime of the F-4(9/2) state of Dy3+ ions. Nature of energy transfer in both the cases was investigated through Dexter's energy transfer mechanism and Inokuti-Hirayama (IH) model. These results suggest that dipole-dipole type of interaction is responsible for Dy3+ to Tb3+ energy transfer and dipole-quadrupole interaction is responsible for Tb3+ to Dy3+ energy transfer. The characteristic emission color of the prepared glasses were examined through CIE 1931 chromaticity coordinates and the corresponding correlated color temperature (CCT) values were estimated which indicates the possible neutral white light emission from the title glasses. All these studies concludes that 0.25 wt% Tb3+ ions co-doped 0.5 wt% Dy3+ ions incorporated titled glass is more suitable for neutral white light emitting applications. (C) 2018 Elsevier B.V. All rights reserved.
机译:一系列新的镝+:Tb3 +的共掺杂的锌leadfluoro-硼磷酸盐玻璃是通过熔体淬火技术不同Tb3 +的离子浓度制备。 Tb3 +的离子浓度对镝的结构和光谱性能的影响+:Tb3 +的共掺杂的标题眼镜是通过FTIR,拉曼光谱,光吸收,发光和衰变测量探讨。所选择的玻璃主机的声子振动能量被发现是998厘米(-1)通过拉曼光谱。 Dy3 +的离子充当敏化剂到Tb3 +的离子发射,从Tb3 +的离子的d-5(4)亚稳态通过起源具有44%的最大效率的非辐射能量转移。在较高的Tb3 +的离子浓度时,Dy3 +的离子的F-4(9/2)亚稳状态,也可以相互通过铽+离子,其inturn增加Dy3 +的离子的F-4(9/2)的状态的寿命增感。在这两种情况下的能量转移的性质是通过德克斯特的能量传递机构和Inokuti-平山(1H)模型中研究。这些结果表明相互作用是偶极型负责镝+以铽离子能量转移和偶极 - 四极相互作用负责铽到镝+能量传递。所制备的眼镜特征发射颜色是通过CIE 1931色度坐标检测和估计相应的相关色温(CCT)的值,其指示从标题眼镜可能的中性白色发光。所有这些研究的结论是,0.25wt%的铽+离子共掺杂0.5wt%的Dy3 +的离子掺入标题玻璃更适合中性白色发光的应用程序。 (c)2018年elestvier b.v.保留所有权利。

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