Suppr超能文献

YWO:Yb/RE(RE = Er/Ho/Tm)中发光的抗热猝灭及其温度传感应用。

Anti-thermal quenching of luminescence in YWO:Yb/RE (RE = Er/Ho/Tm) and its temperature sensing application.

作者信息

Zhang Yuhong, Cai Wentong, Liu Jian, Zhang Ziyi, Sun Bo, Liu Hang

机构信息

School of Electrical and Computer Engineering, Jilin Jianzhu University, Changchun 130118, China.

出版信息

Dalton Trans. 2024 Feb 6;53(6):2575-2590. doi: 10.1039/d3dt03331g.

Abstract

Herein, a series of YWO:10%Yb/%RE (RE = Er/Ho/Tm) phosphors is prepared a solid-state reaction. The upconversion and downshift luminescence properties of the phosphors were investigated under an excitation of 980 nm. The bright blue light emission from Tm ion and the green and red light emissions from Ho(Er) ions were observed. The near-infrared light intensity of NIR-I (Tm, ∼850 nm), NIR-II (Er: ∼1550 nm; Tm: ∼1783 nm) and NIR-III (Ho: ∼2050 nm) were analyzed. In particular, the dramatic thermal enhancement phenomenon in visible and NIR regions was exhibited by the YWO:10%Yb/%RE (RE = Er/Ho/Tm) phosphors. Among them, the green light intensity of Er ions increased 26.77 times, from 303 to 573 K. The NIR-II emission band (∼1783 nm) intensity of Tm ions at 533 K increased 168.7 times compared to that at 313 K. The possible thermal enhancement mechanism is illustrated by the negative thermal expansion (NTE) and Frenkel defect of the YWO host. Finally, the optical temperature sensing performances of YWO:10%Yb/%RE (RE = Er/Ho/Tm) samples are investigated according to the luminescence intensity dependence relationship on temperature. The maximum value of reached 4.24% K at 353 K for YWO:10%Yb/0.6%Ho phosphor. The results indicate that the YWO:10%Yb/%RE (RE = Er/Ho/Tm) phosphors possess anti-thermal quenching properties and are suitable for developing optical temperature sensors.

摘要

在此,通过固态反应制备了一系列YWO:10%Yb/%RE(RE = Er/Ho/Tm)荧光粉。在980 nm激发下研究了这些荧光粉的上转换和下转换发光特性。观察到了Tm离子发出的亮蓝光以及Ho(Er)离子发出的绿光和红光。分析了近红外I区(Tm,850 nm)、近红外II区(Er: ~1550 nm;Tm: ~1783 nm)和近红外III区(Ho: ~2050 nm)的近红外光强度。特别地,YWO:10%Yb/%RE(RE = Er/Ho/Tm)荧光粉在可见光和近红外区域表现出显著的热增强现象。其中,Er离子的绿光强度在303至573 K之间增加了26.77倍。533 K时Tm离子的近红外II发射带(1783 nm)强度与313 K时相比增加了168.7倍。通过YWO基质的负热膨胀(NTE)和弗伦克尔缺陷说明了可能的热增强机制。最后,根据发光强度与温度的依赖关系研究了YWO:10%Yb/%RE(RE = Er/Ho/Tm)样品的光学温度传感性能。对于YWO:10%Yb/0.6%Ho荧光粉,在353 K时达到的最大值为4.24% K。结果表明,YWO:10%Yb/%RE(RE = Er/Ho/Tm)荧光粉具有抗热猝灭性能,适用于开发光学温度传感器。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验