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基于O→Eu电荷转移带边缘和Eu 4f→4f跃迁完全反向热激发的单波段比率测温策略

Single-Band Ratiometric Thermometry Strategy Based on the Completely Reversed Thermal Excitation of O → Eu CTB Edge and Eu 4f → 4f Transition.

作者信息

Chen Yaqi, Guo Haijie, Shi Qiufeng, Qiao Jianwei, Cui Cai'e, Huang Ping, Wang Lei

机构信息

College of Physics, Taiyuan University of Technology, Taiyuan 030024, P.R. China.

出版信息

Inorg Chem. 2024 Sep 2;63(35):16304-16312. doi: 10.1021/acs.inorgchem.4c02268. Epub 2024 Aug 19.

DOI:10.1021/acs.inorgchem.4c02268
PMID:39159455
Abstract

Single-band ratiometric (SBR) strategies present huge potential in the field of luminescence intensity ratio thermometry owing to their excellent signal discrepancy and appealing simplicity. Herein, we employ the approach of Na replacing Li in the LiYGeO:Eu phosphor to regulate the thermal stability of the O → Eu charge-transfer band (CTB) and obtain significant thermal enhancement of luminescence under CTB edge excitation. Combined with the obvious thermal quenching of luminescence under ground-state absorption excitation, the ratio of the single emission band increases by 18 times when the temperature increases from 300 to 570 K. Therefore, such excitation-wavelength-dependent diametrically opposite thermal luminescence behaviors enabled SBR thermometry, whose maximum relative sensitivity can reach up to 3.6% K. We demonstrate that the O → Eu CTB thermal red-shifts and enhancements are particularly attractive for SBR thermometry with high sensitivity by utilizing the diametrically reversed thermal excitation between the O → Eu CTB edge and the 4f → 4f transition of Eu. These advances have opened up a novel horizon for the development of high relative sensitivity and performance of the SBR thermometry strategy.

摘要

单波段比率(SBR)策略由于其出色的信号差异和吸引人的简单性,在发光强度比率测温领域展现出巨大潜力。在此,我们采用在LiYGeO:Eu荧光粉中用Na取代Li的方法来调节O→Eu电荷转移带(CTB)的热稳定性,并在CTB边缘激发下获得显著的发光热增强。结合基态吸收激发下明显的发光热猝灭,当温度从300 K升高到570 K时,单一发射带的比率增加了18倍。因此,这种与激发波长相关的完全相反的热发光行为实现了SBR测温,其最大相对灵敏度可达3.6% K。我们证明,通过利用O→Eu CTB边缘与Eu的4f→4f跃迁之间完全相反的热激发,O→Eu CTB的热红移和增强对于高灵敏度的SBR测温特别有吸引力。这些进展为SBR测温策略的高相对灵敏度和性能发展开辟了新的视野。

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