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首页> 外文期刊>RSC Advances >NaGd(WO4)(2):Yb3+/Er3+ phosphors: hydrothermal synthesis, optical spectroscopy and green upconverted temperature sensing behavior
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NaGd(WO4)(2):Yb3+/Er3+ phosphors: hydrothermal synthesis, optical spectroscopy and green upconverted temperature sensing behavior

机译:NaGd(WO4)(2):Yb3 + / Er3 +荧光粉:水热合成,光谱学和绿色上转换温度感测行为

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摘要

NaGd(WO4)(2):Yb3+/Er3+ (NGW:Yb3+/Er3+) phosphors co-doped with Yb3+ (12-24 at%, at% i.e. atomic percent) and Er3+ ions (1-10 at%) were synthesized by a facile hydrothermal process. Under 980 nm excitation, NGW: Yb3+/Er3+ phosphors exhibited strong green upconversion (UC) emission bands centered at 532 nm (H-2(11/2) -> I-4(15/2)) and 554 nm (S-4(3/2) -> I-4(15/2)) and weak red emissions near 658 and 671 nm (F-4(9/2) -> I-4(15/2)). The optimum doping concentrations of Er3+ and Yb3+ for the highest emission intensity were determined by using X-ray diffraction (XRD) and photoluminescence (PL) analyses. Concentration dependent studies revealed that the optimal composition was realized for the 20 at% Yb3+ and 6.0 at% Er3+-doping concentration with a strong green emission. A possible UC mechanism for NGW:Yb3+/Er3+ depends on the pump power is discussed. The temperature dependence of the fluorescence intensity ratios (FIR) for the two green UC emission bands peaking at 532 and 554 nm was studied in the range of 293-573 K under excitation by a 980 diode laser and the maximum sensitivity was approximately 114.96 x 10(-4) K-1 at 453 K. This indicates that NGW:Yb3+/Er3+ phosphors are potential candidates for optical temperature sensors with high sensitivity.
机译:NaGd(WO4)(2):Yb3 + / Er3 +(NGW:Yb3 + / Er3 +)荧光粉共掺杂Yb3 +(12-24 at%,at%即原子百分比)和Er3 +离子(1-10 at%)简便的热液过程。在980 nm激发下,NGW:Yb3 + / Er3 +荧光粉显示出以532 nm(H-2(11/2)-> I-4(15/2))和554 nm(S- 4(3/2)-> I-4(15/2))和658和671 nm附近的微弱红色发射(F-4(9/2)-> I-4(15/2))。通过X射线衍射(XRD)和光致发光(PL)分析确定了最高发射强度的最佳Er3 +和Yb3 +掺杂浓度。浓度依赖性研究表明,对于20 at%的Yb3 +和6.0 at%的Er3 +掺杂浓度,实现了最佳的组成,并具有强烈​​的绿色发射。讨论了NGW:Yb3 + / Er3 +可能的UC机制取决于泵浦功率。在980-二极管激光激发下,在293-573 K范围内研究了在532和554 nm达到峰值的两个绿色UC发射带的荧光强度比(FIR)的温度依赖性,最大灵敏度约为114.96 x 10 (-4)在453 K时的K-1。这表明NGW:Yb3 + / Er3 +磷光体是具有高灵敏度的光学温度传感器的潜在候选者。

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