Borisov Sergey M, Einrem Rune F, Alemayehu Abraham B, Ghosh Abhik
Institute of Analytical Chemistry and Food Chemistry, Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.
Photochem Photobiol Sci. 2019 May 15;18(5):1166-1170. doi: 10.1039/c8pp00473k.
Presented herein is a first photophysical investigation of a series of rhenium(v)-oxo tris(p-X-phenyl)corroles, ReTpXPC, where X = CF3, F, H, CH3, and OCH3. The complexes all exhibit near-IR phosphorescence in anoxic toluene at room temperature, with emission maxima at 780 ± 10 nm, phosphorescence decay times of 56-74 μs and quantum yields of 1.07-1.52%, the highest reported to date for phosphorescent corrole derivatives. We have also demonstrated that the dyes may serve as indicators in optical oxygen sensors and as sensitizers in triplet-triplet-annihilation-based upconversion. Although the ReO corroles are not superior to benchmark benzoporphyrin complexes that are currently used in these applications, they may prove useful in certain areas such as optical multianalyte sensing owing to improved flexibility in the available spectral properties of the dyes. The high thermal and photochemical stability of the complexes also bodes well for their deployment as new, phosphorescent sensitizers in photodynamic therapy.
本文展示了对一系列铼(Ⅴ)-氧代三(对-X-苯基)卟吩,即ReTpXPC(其中X = CF3、F、H、CH3和OCH3)的首次光物理研究。这些配合物在室温下的无氧甲苯中均呈现近红外磷光,发射最大值在780 ± 10 nm,磷光衰减时间为56 - 74 μs,量子产率为1.07 - 1.52%,这是迄今为止报道的磷光卟吩衍生物中的最高值。我们还证明了这些染料可作为光学氧传感器中的指示剂以及基于三重态-三重态湮灭的上转换中的敏化剂。尽管ReO卟吩并不优于目前在这些应用中使用的基准苯并卟啉配合物,但由于染料在可用光谱特性方面具有更好的灵活性,它们在某些领域(如光学多分析物传感)可能会证明是有用的。这些配合物的高热稳定性和光化学稳定性也预示着它们有望作为光动力疗法中的新型磷光敏化剂得到应用。