材料科学
光致发光
发光
兴奋剂
热的
热稳定性
灵敏度(控制系统)
光电子学
莫来石
纳米技术
分析化学(期刊)
化学工程
热力学
复合材料
电子工程
陶瓷
化学
工程类
物理
色谱法
作者
Michele Back,Jumpei Ueda,Jian Xu,Kazuki Asami,M.G. Brik,Setsuhisa Tanabe
标识
DOI:10.1002/adom.202000124
摘要
Abstract The design of effective optical systems featuring high thermal sensitivity able to discriminate ever smaller variations of temperature in noncontact mode is of critical importance to face the challenges brought by the modern‐day technological revolution. If from one hand, the ratiometric optical thermometers based on Boltzmann distribution are demonstrated to be characterized by a unique reliability, on the other hand, robust performances in different environments are highly desired for new applications such as in situ thermal sensing of catalytic reactions. Here, the crystal field experienced by Cr 3+ in Bi 2 Al 4 O 9 is investigated demonstrating the potential of this system as ratiometric self‐referencing thermal sensor being characterized by high relative sensitivity (1.24% K −1 at 290 K). The remarkable absolute sensitivity results in an exceptional low thermal resolution of ≈0.2 K, 15‐fold lower than for the conventional Nd 3+ ‐based thermometers used in biological applications. The comparison of the performances among different systems evidences the potential of Cr 3+ ‐based thermometers with thermal resolution even lower than the state of the art diamond. In addition, the pH dependence of the photoluminescence emission confirms a high stability also at extreme conditions of basic and acid environments and the aging effects are tested for one week.
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