论文标题
SC $ _2 $ w $ _3 $ o $ $ _ {12} $的热增强的光致发光和温度传感特性:eu $^{3+} $
Thermally enhanced photoluminescence and temperature sensing properties of Sc$_2$W$_3$O$_{12}$:Eu$^{3+}$ phosphors
论文作者
论文摘要
目前,随着光学温度仪的掺杂发光材料掺杂了灯笼离子,引起了很多关注。基于两种排放对温度的不同响应,可以执行荧光强度比(FIR)技术,并进一步估计敏感性以评估光学温度计。在这项研究中,我们将欧盟$^{3+} $离子的不同掺杂浓度引入负膨胀材料SC $ _2 $ _2 $ w $ _3 $ _3 $ o $ $ _ {12} $:eu $^{3+} $,可访问373至548 k的热增强效果,并调查温度感知的详细信息。所有样品均表现出良好的热增强发光行为。 SC $ _2 $ W $ _3 $ o $ _ {12} $的排放强度:6 mol%eu $^{3+} $磷光剂达到473 K的初始强度的147.81%。随着欧盟掺杂浓度的增加,样品对热震动的耐药性降低。基于过渡5D0-7F1(592 nm)和5D0-7F2(613 nm)的FIR技术EU $^{3+} $ ions证明了最高的相对温度敏感性为3.063%k-1 k-1 k-1在298 k时,sc $ _2 $ _2 $ _3 $ _3 $ o $ $ $ $ _ $ _ {3 $} $:欧盟$^{3+} $ phosphors。样本的灵敏度随着EU $^{3+} $浓度的增加而降低。 SC $ _2 $ _2 $ w $ _3 $ o $ $ _ {12} $受益于热增强的发光性能和良好的温度传感属性,可以用作光学温度计。
Currently,lanthanide ions doped luminescence materials applying as optical thermometers have arose much concern. Basing on the different responses of two emissions to temperature, the fluorescence intensity ratio (FIR) technique can be executed and further estimate the sensitivities to assess the optical thermometry performances. In this study, we introduce different doping concentrations of Eu$^{3+}$ ions into negative expansion material Sc$_2$W$_3$O$_{12}$:Eu$^{3+}$, accessing to the thermal enhanced luminescence from 373 to 548 K, and investigate the temperature sensing properties in detail. All samples exhibit good thermally enhanced luminescence behavior. The emission intensity of Sc$_2$W$_3$O$_{12}$: 6 mol% Eu$^{3+}$ phosphors reaches at 147.81% of initial intensity at 473 K. As the Eu doping concentration increases, the resistance of the samples to thermal quenching decreases. The FIR technique based on the transitions 5D0-7F1 (592 nm) and 5D0-7F2 (613 nm) of Eu$^{3+}$ ions demonstrate a maximum relative temperature sensitivity of 3.063% K-1 at 298 K for Sc$_2$W$_3$O$_{12}$:Eu$^{3+}$: 6 mol% Eu$^{3+}$ phosphors. The sensitivity of sample decreases with the increase of Eu$^{3+}$ concentration. Benefiting from the thermal enhanced luminescence performance and good temperature sensing properties, the Sc$_2$W$_3$O$_{12}$:Eu$^{3+}$: Eu$^{3+}$ phosphors can be applies as optical thermometers.