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首页> 外文期刊>Journal of Chemical Sciences >Porphyrin-anthraquinone dyads: Synthesis, spectroscopy and photochemistry
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Porphyrin-anthraquinone dyads: Synthesis, spectroscopy and photochemistry

机译:卟啉-蒽醌二联体:合成,光谱学和光化学

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摘要

Free-base (H2L2), copper(II) (CuL2) and zinc(II) (ZnL2) derivatives of a porphyrin-anthraquinone conjugate with an azomethine group separating the two photoactive subunits have been synthesized and characterized by mass (FAB), IR, UV-visible, 1H NMR and ESR spectroscopic techniques and also by cyclic and differential pulse voltammetric methods. Analysis of the data reveals that the spectral and electrochemical properties of the individual chromophoric entities are retained and that there is no specific e???-e??? interaction between the porphyrin and anthraquinone subunits. H2L2 and ZnL2 are shown to exhibit substantial quenching (88-97%) of the porphyrin fluorescence compared to their corresponding monomeric analogues. An intramolecular electron-transfer mechanism is proposed for the substantial decrease in fluorescence in both derivatives. The fluorescence decays of porphyrin-anthraquinone conjugates are fit to 2/3 exponentials and indicate that multiple orientations of the porphyrin and anthraquinone groups contribute to the electron-transfer event. These results are in good agreement with steady-state fluorescence results. From the time-resolved fluorescence data, the electron-transfer rate constants are calculated, indicating e?‘?ET values in the range of 1.1 ?— 109 to 9.9 ?— 1010 s-1 that are dependent upon the solvent.
机译:合成了卟啉-蒽醌共轭物的带有偶氮甲胺基团的游离碱(H2L2),铜(II)(CuL2)和锌(II)(ZnL2)衍生物,并用两个分离的光敏亚基的甲亚胺基团进行了表征,并通过质量(FAB),红外光谱进行了表征,紫外可见光,1H NMR和ESR光谱技术以及循环和差分脉冲伏安法。数据分析表明,保留了各个发色实体的光谱和电化学性质,并且没有特定的e--e-。卟啉和蒽醌亚基之间的相互作用。与相应的单体类似物相比,H2L2和ZnL2表现出卟啉荧光的显着猝灭(88-97%)。提出了一种分子内电子转移机制,以使两种衍生物的荧光显着降低。卟啉-蒽醌共轭物的荧光衰减符合2/3指数,表明卟啉和蒽醌基团的多个方向有助于电子转移。这些结果与稳态荧光结果非常吻合。根据时间分辨的荧光数据,计算出电子传递速率常数,表明取决于溶剂的eδ′ΔET值在1.1〜109〜9.9〜1010s-1的范围内。

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