首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Broadband down-conversion through the co-contribution of simultaneous energy transfer from Eu3+/2+ to Yb3+ and CTS absorption of Yb3+
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Broadband down-conversion through the co-contribution of simultaneous energy transfer from Eu3+/2+ to Yb3+ and CTS absorption of Yb3+

机译:通过从Eu3 + / 2 +到Yb3 +的同时能量传输和Yb3 +的CTS吸收的共同贡献实现宽带下变频

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摘要

The europium (Eu) and ytterbium (Yb) co-doped SiO2-Al2O3-MF2 (M = Ca, Sr) oxyfluoride glasses were prepared by the melting-quenching method, in which the partial reduction of Eu3+ ions during high temperature fabrication in air atmosphere was explained by optical basicity model. In this system, the near-infrared emission of Yb3+ at 974 nm can be observed upon the excitation of both Eu3+ and Eu2+, as well as charge transfer state absorption of Yb3+. The steady and time-resolved luminescence spectra measurements were carried out to further prove the energy transfer from Eu3+/2+ ions to Yb3+. Based on the measured luminescence decay of Eu3+ and Eu2+, the energy transfer efficiency and the quantum efficiency are much higher in the glass containing SrF2 due to the efficient energy transfer from both Eu3+ and Eu2+ to Yb3+. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过熔融-淬火方法制备了((Eu)和(Yb)共掺杂的SiO2-Al2O3-MF2(M = Ca,Sr)氟氧化物玻璃,其中在空气中高温制造过程中部分还原了Eu3 +离子光学碱度模型解释了大气。在该系统中,通过激发Eu3 +和Eu2 +以及Yb3 +的电荷转移态吸收,可以观察到974 nm处Yb3 +的近红外发射。进行了稳定和时间分辨的发光光谱测量,以进一步证明从Eu3 + / 2 +离子到Yb3 +的能量转移。根据测得的Eu3 +和Eu2 +的发光衰减,由于从Eu3 +和Eu2 +到Yb3 +的有效能量转移,含SrF2的玻璃的能量转移效率和量子效率要高得多。 (C)2015 Elsevier B.V.保留所有权利。

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