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环金属化铱-香豆素比率型氧传感器:改善的信号分辨率和可调动态范围

Cyclometalated iridium-coumarin ratiometric oxygen sensors: improved signal resolution and tunable dynamic ranges.

作者信息

Wu Yanyu, Sutton Gregory D, Halamicek Michael D S, Xing Xinxin, Bao Jiming, Teets Thomas S

机构信息

University of Houston, Department of Chemistry 3585 Cullen Blvd., Room 112 Houston TX 77204-5003 USA

University of Houston, Department of Electrical and Computer Engineering and Texas Center for Superconductivity (TcSUH) Houston TX 77204 USA.

出版信息

Chem Sci. 2022 Jul 15;13(30):8804-8812. doi: 10.1039/d2sc02909j. eCollection 2022 Aug 4.

Abstract

In this work we introduce a new series of ratiometric oxygen sensors based on phosphorescent cyclometalated iridium centers partnered with organic coumarin fluorophores. Three different cyclometalating ligands and two different pyridyl-containing coumarin types were used to prepare six target complexes with tunable excited-state energies. Three of the complexes display dual emission, with fluorescence arising from the coumarin ligand, and phosphorescence from either the cyclometalated iridium center or the coumarin. These dual-emitting complexes function as ratiometric oxygen sensors, with the phosphorescence quenched under O while fluorescence is unaffected. The use of blue-fluorescent coumarins results in good signal resolution between fluorescence and phosphorescence. Moreover, the sensitivity and dynamic range, measured with Stern-Volmer analysis, can be tuned two orders of magnitude by virtue of our ability to synthetically control the triplet excited-state ordering. The complex with cyclometalated iridium MLCT phosphorescence operates under hyperoxic conditions, whereas the two complexes with coumarin-centered phosphorescence are sensitive to very low levels of O and function as hypoxic sensors.

摘要

在这项工作中,我们介绍了一系列基于磷光环金属化铱中心与有机香豆素荧光团相结合的新型比率型氧传感器。使用三种不同的环金属化配体和两种不同的含吡啶基香豆素类型来制备六种具有可调激发态能量的目标配合物。其中三种配合物表现出双重发射,香豆素配体产生荧光,环金属化铱中心或香豆素产生磷光。这些双发射配合物用作比率型氧传感器,在氧气存在下磷光淬灭而荧光不受影响。使用蓝色荧光香豆素可在荧光和磷光之间实现良好的信号分辨率。此外,通过Stern-Volmer分析测量的灵敏度和动态范围,凭借我们合成控制三重激发态顺序的能力可调整两个数量级。具有环金属化铱MLCT磷光的配合物在高氧条件下工作,而两种以香豆素为中心磷光的配合物对极低水平的氧气敏感,可作为低氧传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddbe/9350586/8f283d8c753f/d2sc02909j-s1.jpg

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