Xu Jintao, Zhu Shanlin, Liao Canyuan, Zhao Weijun, Zhong Xingyuan, Wang Zijun, Zhong Jiuping
School of Materials, Sun Yat-Sen University, Shenzhen, 518107, China.
L'Institut Mondor de Recherche Biomédicale, Université Paris Est Créteil, INSERM, U955, CNRS, 94010, Créteil, France.
Heliyon. 2024 Oct 29;10(21):e39951. doi: 10.1016/j.heliyon.2024.e39951. eCollection 2024 Nov 15.
High-sensitivity optical temperature measurement has attracted extensive attention in both fundamental studies and practical applications. In this study, a series of upconversion (UC) luminescence phosphors composed of NaGd(PO) (NGP) doped with 20 at% Yb and various concentrations of Er (0.5 at% as the optimal concentration) was synthesized by high-temperature solid-state method. And their crystal structure and the distribution of lanthanide dopants were analyzed using X-ray diffraction with Rietveld refinement verifies. Under 980 nm laser excitation, the obtained phosphors show the characteristic Er upconversion green and red emission bands through two-photon processes. The fluorescence intensity ratio (FIR) based on the thermal coupled states demonstrates the thermal sensing ability in a wide temperature range of 200-573 K. The thermal sensitivity is relatively high with the maximum absolute thermal sensitivity of 0.53 % K (523 K) and the maximum relative thermal sensitivity of 2.60 % K. The phosphor NGP:Yb/Er also exhibits high repeatability as the thermal sensors reach 97 %. These findings postulate the potential of NGP:Yb/Er as a promising candidate in optical thermal sensing applications.
高灵敏度光学温度测量在基础研究和实际应用中都引起了广泛关注。在本研究中,采用高温固相法合成了一系列由掺杂20 at% Yb和不同浓度Er(0.5 at%为最佳浓度)的NaGd(PO)(NGP)组成的上转换(UC)发光磷光体。使用X射线衍射结合Rietveld精修验证分析了它们的晶体结构和镧系掺杂剂的分布。在980 nm激光激发下,所得磷光体通过双光子过程呈现出特征性的Er上转换绿色和红色发射带。基于热耦合态的荧光强度比(FIR)在200 - 573 K的宽温度范围内展示了热传感能力。热灵敏度相对较高,最大绝对热灵敏度为0.53 % K(523 K),最大相对热灵敏度为2.60 % K。磷光体NGP:Yb/Er作为热传感器的重复性也很高,达到了97 %。这些发现表明NGP:Yb/Er在光学热传感应用中具有作为有前景候选材料的潜力。