材料科学
光谱学
Crystal(编程语言)
兴奋剂
分析化学(期刊)
德拜模型
光电子学
大气温度范围
光致发光
激发态
猝灭(荧光)
领域(数学)
凝聚态物理
原子物理学
光学
热力学
物理
化学
计算机科学
数学
荧光
量子力学
程序设计语言
纯数学
色谱法
作者
Michele Back,Jumpei Ueda,M.G. Brik,Tadeusz Leśniewski,M. Grinberg,Setsuhisa Tanabe
标识
DOI:10.1021/acsami.8b15607
摘要
The increasing interest in the development of ratiometric optical thermal sensors has led to a wide variety of new systems with promising properties. Among them, singly-doped ratiometric thermometers were recently demonstrated to be particularly reliable. With the aim to discuss the development of an ideal optical thermal sensor, a combined experimental and theoretical insight into the spectroscopy of the Bi2Ga4O9:Cr3+ system is reported showing the importance of an insightful analysis in a wide temperature range. Low-temperature photoluminescence analysis (from 10 K) and the temperature dependence of the lifetime investigation, together with the crystal field analysis and the modeling of the thermal quenching process, allow the estimation of key parameters such as the Debye temperature (cutoff frequency), the Huang-Rhys parameter, and the energy barrier between 2Eg and 4T2g. Additionally, by considering the reliable class of singly-doped ratiometric thermometers based on a couple of excited states obeying the Boltzmann law, the important role played by the absolute sensitivity was discussed and the great potential of Cr3+ singly-activated systems was demonstrated. The results may provide new guidelines for the design of reliable optical thermometers with outstanding and robust performances.
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