发光
芯(光纤)
离子
分析化学(期刊)
斯塔克效应
热的
材料科学
兴奋剂
灵敏度(控制系统)
壳体(结构)
化学
原子物理学
光电子学
谱线
物理
工程类
色谱法
气象学
复合材料
有机化学
电子工程
天文
作者
Jingxin Ding,Huazhen Liao,Libin Pang,Deping Wang,Song Ye
标识
DOI:10.1016/j.optmat.2022.112304
摘要
Rare earth ions doped core-shell thermometers exhibit improved up-conversion emission behaviors, while the thermal sensitivity is not higher than the corresponding core-only structured luminescent thermometers via the thermal coupled levels based luminescence intensity ratio (LIR) technique. In this work, the core-only β-NaYF4: 16Yb3+, 4Er3+ (C–4Er) up-conversion nanoparticles (UCNPs) and the sub 25 nm core-shell β-NaYF4: 16Yb3+, 4Er3+@0.5NaGdF4 (CS–[email protected]) and β-NaYF4: 16Yb3+, 4Er3+@1NaGdF4 (CS–[email protected]) UCNPs have been successfully synthesized by seed-mediated growth methods for temperature detection. The spectral study indicated that the up-conversion luminescence intensity of [email protected] and [email protected] was obviously enhanced compared withC-4Er. Luminescence intensity ratio originated from thermally coupled Stark sublevels (Stark-LIR) of Er3+ (2H11/2(1)(2), 4S3/2(1)(2)(3)) of [email protected] and [email protected] has been firstly applied to calculated the relative thermal sensitivity (SR) of core-shell UCNPs. As a result, SR of [email protected] is the largest among the considered UCNPs, and is increased from 10.95 × 10−3/K (LIR) to 17.80 × 10−3/K (Stark-LIR), indicating that with Stark-LIR techniques, the nano core-shell sensors behave a larger SR than core-only structured thermometers. This work may lead to an appropriate approach to improve the temperature sensitivity of core-shell thermometers for temperature sensing.
科研通智能强力驱动
Strongly Powered by AbleSci AI