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首页> 外文期刊>Optical Materials >Color-tunable Eu~(3+)- or Sm~(3+)-doped perovskite phosphors as optical temperature-sensing materials
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Color-tunable Eu~(3+)- or Sm~(3+)-doped perovskite phosphors as optical temperature-sensing materials

机译:颜色可调欧〜(3 +) - 或SM〜(3 +) - 掺杂钙钛矿磷光体作为光学温度传感材料

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摘要

Eu3+ or Sm3+-doped Sr2GaNbO6 perovskite phosphors are synthesized by a high-temperature solid-phase method, and their luminescence performance, energy transfer, and thermal sensitivity are studied. The results showed that Sr2GaNbO6 phosphor is an effective self-activated host, and successful doping with rare-earth ions is proven by their characteristic emission. At 332-nm excitation, both the broadband emissions from s-orbital mixing of the transition metal ions Nb5+ and Sr2+ and GaO6 groups and the sharp emissions from Eu3+ or Sm3+ ions are observed for Sr2GaNbO6:R3+ (R = Eu, Sm) phosphors, respectively. The emission color can be modulated from blue to white by regulating the doping concentration of Eu3+ or Sm3+, which is attributed to the effective energy transfer from s-orbital mixing of the transition metal ions Nb5+ and Sr2+ and GaO6 groups to Eu3+ or Sm3+. Based on the emission fluorescence intensity ratio of the s-orbital mixing of the transition metal ions Nb5+ and Sr2+ and GaO6 groups to the Eu3+ or Sm3+ ions in the range of 298-623 K, optical temperature sensing properties of Sr2GaNbO6:R3+ showed the maximum absolute and relative sensitivities are 0.0193 K-1 and 1.86% K-1 at 298 K of Sr2GaNbO6:0.018Eu(3+) phosphor, respectively, as well as 0.00862 K-1 and 1.70% K-1 at 298 K and at 623 K, respectively, of Sr2GaNbO6:0.08Sm(3+) phosphor. These results demonstrate a viable strategy to tune the emitting color and achieve optical temperature sensing in single-doped phosphors by controlling the energy transfer between the self-activated host and the activator. This strategy provides application potential for the white light-emitting diodes and non-contact thermometric multifunctional materials.
机译:通过高温固相法合成Eu3 +或SM3 + -Doped SR2Ghbo6钙钛矿磷光体,研究了它们的发光性能,能量转移和热敏性。结果表明,SR2GONBO6磷光体是一种有效的自活化宿主,通过其特征排放证明了与稀土离子的成功掺杂。在332nm激发中,对于SR2GONBO6,观察到过渡金属离子NB5 +和SR2 +和GaO6组的S-轨道混合的宽带排放和来自EU3 +或SM3 +离子的急剧发射,分别。通过调节EU3 +或SM3 +的掺杂浓度,可以从蓝色到白色来调节发射颜色,这归因于从过渡金属离子NB5 +和SR2 +和GaO6基团的S-轨道混合的有效能量转移到Eu3 +或SM3 +。基于过渡金属离子Nb5 +和Sr2 +和GaO6基团的S-轨道混合的发射荧光强度比在298-623k的范围内的Eu3 +或Sm 3 +离子中,SR2GONBOBO6的光学温度感测性能显示为最大值绝对和相对敏感性为0.0193k-1和1.86%k-1,分别为298k6:0.018Eu(3+)磷光体,以及0.00862k-1和1.70%K-1,在298k和623分别为SR2GONBO6:0.08SM(3+)磷光体的K分别。这些结果证明了通过控制自激活宿主和活化剂之间的能量转移来调节发射颜色并在单掺杂磷光体中实现光学温度感测的可行策略。该策略为白光发光二极管和非接触式温度多功能材料提供了应用潜力。

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