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用于有效氧传感和单线态氧生成的发光镧系配合物。

Luminescent Lanthanide Complexes for Effective Oxygen-Sensing and Singlet Oxygen Generation.

机构信息

Faculty of Engineering, Hokkaido University Kita 13, Nishi 8, Kita-ku, Sapporo, Hokkaido, 060-8628, Japan.

Institute for Chemical Reaction Design and Discovery (WPI-ICReDD), Hokkaido University Kita 21, Nishi 10, Kita-ku, Sapporo, Hokkaido, 001-0021, Japan.

出版信息

Chempluschem. 2023 Jun;88(6):e202200445. doi: 10.1002/cplu.202200445. Epub 2023 Feb 9.

Abstract

Oxygen quantification using luminescence has attracted considerable attention in various fields, including environmental monitoring and clinical analysis. Among the reported luminophores, trivalent lanthanide complexes have displayed characteristic narrow emission bands with high brightness. This bright emission is based on photo-sensitized energy transfer via organic triplet states. The organic triplet states in lanthanide complexes effectively react with the triplet oxygen, enabling oxygen quantification by lanthanide luminescence. Some Tb and Eu complexes with slow deactivation processes have also formed the excited state equilibrium, thus resulting in the emission-lifetime based oxygen sensing property. The combination of Tb /Eu emission, Eu /Sm emission, Eu /ligand phosphorescence, and ligand fluorescence/ligand phosphorescence provide the ratiometric oxygen-sensing properties. Moreover, the reaction generates singlet oxygen species which exhibit numerous applications in the photo-medical field. The ligands with large π-conjugated aromatic systems, such as porphyrin, phthalocyanine, and polyaromatic compounds, induces highly efficient oxygen generation. The combination of effective luminescence with singlet-oxygen generation by the lanthanide complexes render them suitable for photo-driven theranostics. This review summarizes the research progress of lanthanide complexes with efficient oxygen-sensing and singlet-oxygen generation properties.

摘要

利用发光进行氧量化在包括环境监测和临床分析在内的各个领域引起了相当大的关注。在报道的发光体中,三价镧系元素配合物显示出特征性的窄发射带和高亮度。这种明亮的发射基于通过有机三重态的光致敏能量转移。镧系元素配合物中的有机三重态有效地与三重态氧反应,从而通过镧系元素发光进行氧量化。一些具有缓慢失活过程的 Tb 和 Eu 配合物也形成了激发态平衡,从而导致基于发射寿命的氧传感特性。Tb/Eu 发射、Eu/Sm 发射、Eu/配体磷光和配体荧光/配体磷光的组合提供了比率氧传感特性。此外,该反应产生了单线态氧物种,在光医学领域具有多种应用。具有大的π共轭芳族体系的配体,如卟啉、酞菁和多环芳烃化合物,诱导高效的氧气生成。镧系元素配合物的有效发光与单线态氧生成的结合使它们适用于光驱动治疗。本综述总结了具有高效氧传感和单线态氧生成性能的镧系元素配合物的研究进展。

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