Institute of Natural Sciences, Graduate Program in Physics, Federal University of Pará, Belém, PA, Brazil.
Department of Chemistry, The University of North Carolina at Chapel Hill, Murray Hall, Chapel Hill, NC, United States.
Spectrochim Acta A Mol Biomol Spectrosc. 2020 Jan 5;224:117371. doi: 10.1016/j.saa.2019.117371. Epub 2019 Jul 8.
Zinc porphyrins are potential candidates for boosting the advancement of various technological applications, including those exploring the molecule's radiative emissions. In this work, the excitation dependence of fluorescence spectra from 5,10,15,20-meso-tetrapyridyl zinc(II) porphyrin dissolved in a binary solvent mixture of CHCl: MeOH, is reported. Important modifications in the profiles of the fluorescence bands are observed after exciting the molecules in a broad wavelength range from 350 to 565 nm. We attribute such modifications to the existence of two distinct relaxation pathways, related to two quasi-degenerated potential energy surfaces (PES) in the ZnTPyP's first excited state whose population rates changes for different excitation wavelengths. We also observed that by changing the CHCl:MeOH proportion in the binary mixture, a quenching mechanism mediated by the MeOH hydrogen bondings and ZnTPyP takes place, which allows for tuning the excitation dependence of the aforementioned relaxations pathways. Moreover, our data confirm that the addition of outlying RuCl(dppb)(bipy) ruthenium complex linked to the pyridyl moieties of the ZnTPyP ring is also an excellent strategy to modify the excitation dependence of the fluorescence relaxation pathways.
锌卟啉是提高各种技术应用进展的潜在候选物,包括探索分子辐射发射的应用。在这项工作中,报道了 5,10,15,20-四(吡啶基)锌(II)卟啉在 CHCl:MeOH 二元溶剂混合物中溶解时的荧光光谱随激发的依赖性。在 350 到 565nm 的宽波长范围内激发分子后,观察到荧光带的轮廓发生了重要的变化。我们将这些变化归因于两种不同弛豫途径的存在,它们与 ZnTPyP 的第一激发态中的两个准简并势能面(PES)有关,其种群速率随不同的激发波长而变化。我们还观察到,通过改变二元混合物中 CHCl:MeOH 的比例,发生了由 MeOH 氢键和 ZnTPyP 介导的猝灭机制,这使得可以调节上述弛豫途径的激发依赖性。此外,我们的数据证实,添加与 ZnTPyP 环的吡啶基部分相连的外围 RuCl(dppb)(bipy)钌配合物也是修饰荧光弛豫途径的激发依赖性的绝佳策略。