Li Sixing, Li Liang, Wang Wenming, Chen Hongmei, Li Yong, Huang Xianshan, Pan Yan
School of Mathematics and Physics, Anhui University of Technology Maanshan 243000 China
Analysis and Testing Central Facility, Anhui University of Technology Maanshan 243000 China.
RSC Adv. 2021 Jun 28;11(37):22798-22804. doi: 10.1039/d1ra04038c. eCollection 2021 Jun 25.
Transparent glass ceramics (GCs) containing BaYbF:Er nanocrystals were successfully fabricated by a traditional melt-quenching method. The formation of BaYbF nanocrystals was confirmed by X-ray diffraction, transmission electron microscopy, and selected area electron diffraction. Compared with the precursor glass, the enhanced emission intensity and lifetime of GCs indicate that the Er ions incorporate into the BaYbF nanocrystals after crystallization. The color tuning properties with doping under 980 nm excitation have been systematically discussed. It was found that the red/green ratio increased with Er ion doping and the corresponding color changed from greenish-yellow to yellow-green. Furthermore, the temperature-dependent luminescence properties were studied in detail by the fluorescence intensity ratio (FIR) technique. The monotonic change of FIR with temperature indicates that this material is suitable for temperature sensing. At a temperature of 450 K, the relative sensitivity of the prepared sample reached its maximal value of 0.20% K. The results show that the GCs containing BaYbF:Er nanocrystals are candidate materials for temperature sensing.
通过传统的熔体淬火法成功制备了含有BaYbF:Er纳米晶体的透明玻璃陶瓷(GCs)。通过X射线衍射、透射电子显微镜和选区电子衍射确认了BaYbF纳米晶体的形成。与前驱体玻璃相比,GCs增强的发射强度和寿命表明,Er离子在结晶后掺入到BaYbF纳米晶体中。系统地讨论了980 nm激发下掺杂的颜色调谐特性。发现随着Er离子掺杂,红/绿比增加,相应的颜色从绿黄色变为黄绿色。此外,通过荧光强度比(FIR)技术详细研究了温度依赖的发光特性。FIR随温度的单调变化表明这种材料适用于温度传感。在450 K的温度下,制备样品的相对灵敏度达到其最大值0.20% K。结果表明,含有BaYbF:Er纳米晶体的GCs是温度传感的候选材料。