Tian Yue, Tian Bining, Cui Cai'e, Huang Ping, Wang Lei, Chen Baojiu
Opt Lett. 2014 Jul 15;39(14):4164-7. doi: 10.1364/OL.39.004164.
Temperature-dependent luminescence of spherical NaEuF₄ phosphors with different particle sizes was studied. The thermally coupled ⁵D₀ and ⁵D₁ level of Eu³⁺ was observed. The linear dependence of emission intensities of ⁵D₀ level of NaEuF₄ phosphor on temperature confirmed the excellent temperature sensing performance. Sensitivity up to 0.43% is achieved via decreasing the particle size, which is higher than that of reported thermometry based on upconversion of lanthanide ions. Moreover, the original luminescent intensity of 90% was recovered after 10 temperature-changed cycles, indicating good sensing stability. Therefore, spherical NaEuF₄ phosphor might be a promising candidate for optical temperature sensors.
研究了不同粒径的球形NaEuF₄荧光粉的温度依赖发光特性。观察到了Eu³⁺的热耦合⁵D₀和⁵D₁能级。NaEuF₄荧光粉⁵D₀能级发射强度与温度的线性关系证实了其优异的温度传感性能。通过减小粒径实现了高达0.43%的灵敏度,这高于基于镧系离子上转换的已报道测温方法的灵敏度。此外,在10次温度循环后,90%的原始发光强度得以恢复,表明其具有良好的传感稳定性。因此,球形NaEuF₄荧光粉可能是光学温度传感器的一个有前景的候选材料。