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首页> 外文期刊>Journal of Electronic Materials >Emission Properties of Sn2+ and Sm3+ Co-doped Barium Phosphate Glass
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Emission Properties of Sn2+ and Sm3+ Co-doped Barium Phosphate Glass

机译:Sn2 +和Sm3 +共掺杂磷酸钡玻璃的发射特性

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摘要

Co-doping of a P2O5:BaO glass matrix with divalent tin and trivalent samarium ions has been realized by the melt-quenching technique with the purpose of investigating the material's luminescent properties. Photoluminescence excitation spectra obtained by monitoring Sm(3+ 4)G(5/2) emission showed a broad excitation band around 290 nm (absent in a Sm3+-doped reference), typical of donor/acceptor energy transfer. Under such excitation, the material exhibits a reddish-white emission. Time-resolved spectra recorded under the 290-nm excitation (non-resonant with Sm3+ excitation peaks) exposed a broad blue-white band characteristic of twofold-coordinated Sn centers and orange-red emission bands of Sm3+ ions, which appeared well separated in time in accord with their emission decay dynamics. Consequently, the data indicate that light absorption occurs at Sn centers (donors) followed by energy transfer to samarium ions (acceptors) which results in populating the (4)G(5/2) emitting state in Sm3+. Energy transfer pathways likely resulting in the sensitization of Sm3+ photoluminescence are discussed. Results are put into context in terms of the potential of SnO and rare-earth co-doped barium phosphate glasses for use in white light-emitting devices.
机译:P2O5:BaO玻璃基质与二价锡和三价valent离子的共掺杂已经通过熔融淬火技术实现,目的是研究材料的发光特性。通过监测Sm(3+ 4)G(5/2)发射获得的光致发光激发光谱显示出约290 nm的宽激发带(在掺杂Sm3 +的参比中不存在),这是典型的供体/受体能量转移。在这种激发下,该材料呈现出红白色发射。在290-nm激发下记录的时间分辨光谱(与Sm3 +激发峰无共振)显示了具有双重配位的Sn中心的宽蓝白色谱带特征和Sm3 +离子的橙红色发射谱带,这些谱带在时间上间隔得很好符合它们的发射衰减动力学。因此,数据表明光吸收发生在Sn中心(施主),然后能量转移到sa离子(受主),这导致在Sm3 +中形成(4)G(5/2)发射态。讨论了可能导致Sm3 +光致敏化的能量转移途径。就用于白光发射装置的SnO和稀土共掺杂的磷酸钡玻璃的潜力,给出了相关结果。

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