材料科学
模式(计算机接口)
陶瓷
高分辨率
纤维
玻璃纤维
光电子学
复合材料
遥感
计算机科学
地质学
操作系统
作者
Yongsheng Sun,Meihua Chen,Puxian Xiong,Yuzhen Wang,Shuhang Tian,Qingquan Jiang,Yao Xiao,Hongyou Zhou,Peishan Shao,Qiuqiang Zhan,Jiulin Gan,Qian Qi,Dongdan Chen,Zhongmin Yang
出处
期刊:Advanced powder materials
[Elsevier]
日期:2023-04-15
卷期号:2 (4): 100132-100132
被引量:12
标识
DOI:10.1016/j.apmate.2023.100132
摘要
Optical temperature sensors, which can accurately detect temperature in biological systems, are crucial to the development of healthcare monitoring. To challenge the state-of-art technology, it is necessary to design single luminescence center doped materials with multi-wavelength emission for optical temperature sensors with more modes and higher resolution. Here, an Er3+ single-doped KYF4 nanocrystals glass ceramic with an obvious thermochromic phenomenon is reported for the first time, which shows a different temperature-dependent green, red, and near-infrared luminescence behavior based on thermal disturbance model. In addition, Er3+ single-doped GC fiber was drawn and fabricated into multi-mode optical fiber temperature sensor, which has superior measured temperature resolution (<0.5 °C), excellent detection limit (0.077 °C), and high correlation coefficient (R2) of 0.99997. More importantly, this sensor can monitor temperature in different scenarios with great environmental interference resistance and repeatability. These results indicate that our sensor shows great promise as a technology for environmental and healthcare monitoring, and it provides a route for the design of optical fiber temperature sensors with multi-mode and high resolution.
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