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beta-Functionalized Push-Pull opp-Dibenzoporphyrins

机译:beta功能化推挽opp-二苯并卟啉

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The synthesis of a series of beta-functionalized push-pull dibenzoporphyrins was realized. These porphyrins display subtle push-pull effects, demonstrating the exceptional tunability of their electronic and electrochemical properties. The UV-vis spectra of these porphyrins show unique absorption patterns with shouldered Soret bands and extra absorptions in the Ceband region. Stronger electron-with-drawing groups display more significant bathochromic shifts of the Soret bands. The fluorescence spectra of these porphyrins show strong near-IR emission bands (600-850 non). In particular, fluorescence quenching effect was observed for pyridyl carrying push-pull porphyrin 4c in the presence of an acid. TFA titration study of 4c using UV-vis and fluorescence spectroscopy reveals that the fluorescence quenching can be mainly attributed to the protonation of the pyridyl groups of 4c. The versatile synthetic methods developed in this work may open a door to access a large number of functionalized organic materials that are currently unavailable. The structure-property studies provided in this work may provide useful guidelines for the design of new generations of materials in dye-sensitized solar cells, in nonlinear optical applications, as fluorescence probes, as well as sensitizers for photodynamic therapy.
机译:实现了一系列β-官能化推挽二苯并卟啉的合成。这些卟啉显示出微妙的推挽效应,证明了其电子和电化学性能的出色可调性。这些卟啉的紫外-可见光谱显示出独特的吸收模式,其肩带具有索雷特谱带,并且在Ceband区具有额外的吸收。较强的吸电子基团显示出Soret带的更显着的红移。这些卟啉的荧光光谱显示出很强的近红外发射带(600-850非)。特别地,在酸的存在下,对于吡啶基携带推挽卟啉4c,观察到荧光猝灭作用。使用紫外可见光谱和荧光光谱法对4c进行TFA滴定研究表明,荧光猝灭主要归因于4c吡啶基的质子化。在这项工作中开发的通用合成方法可能会打开一扇门,以访问目前无法获得的大量功能化有机材料。这项工作中提供的结构特性研究可以为染料敏化太阳能电池中新一代材料的设计,非线性光学应用,荧光探针以及用于光动力疗法的敏化剂提供有用的指导。

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