Bioorganic Chemistry Laboratory, Department of Chemistry, Indian Institute of Technology, Guwahati-781039, India.
J Org Chem. 2011 May 6;76(9):3348-56. doi: 10.1021/jo200231k. Epub 2011 Mar 29.
We have demonstrated the installation of a fluorescence property into a nonfluorescent precursor and modulation of an emission response of a pyrene fluorophore via click reaction. The synthesized fluorophores show different solvatochromicity and/or intramolecular charge transfer (ICT) feature as is revealed from the UV-visible, fluorescence photophysical properties of these fluorophores, and DFT/TDDFT calculation. We observed that some of the synthesized fluorophores showed purely ICT character while emission from some of them arose from the LE state. A structureless and solvent polarity-sensitive dual emission behavior was observed for one of the triazolylpyrene fluorophores that contains an electron-donating -NMe(2) substituent (fluorophore, 7a). Conversely, triazolylpyrene with an electron-withdrawing -CN group (fluorophore, 7b) showed a solvent polarity-independent vibronic emission. The effect of ICT on the photophysical properties of these fluorophores was studied by fluorescence emission spectra and DFT/TDDFT calculations. Fluorescence lifetimes were also measured in different solvents. All of our findings revealed the delicate interplay of structure and emission properties and thus having broader general utility. As the CT to LE intensity ratio can be employed as a sensing index, the dual emissive fluorophore can be utilized in designing the molecular recognition system too. We envisage that our investigation is of importance for the development of new fluorophores with predetermined photophysical properties that may find a wide range of applications in chemistry, biology, and material sciences.
我们已经展示了将荧光性质引入非荧光前体中,并通过点击反应调节芘荧光团的发射响应。所合成的荧光团显示出不同的溶剂变色性和/或分子内电荷转移(ICT)特征,这可以从这些荧光团的紫外-可见、荧光光物理性质以及 DFT/TDDFT 计算中得到揭示。我们观察到,一些合成的荧光团表现出纯粹的 ICT 特征,而其中一些的发射则来自 LE 态。一种含有给电子-NMe(2)取代基的三唑基芘荧光团(荧光团 7a)表现出无定形和对溶剂极性敏感的双重发射行为。相反,具有吸电子-CN 基团的三唑基芘(荧光团 7b)显示出与溶剂极性无关的振动发射。通过荧光发射光谱和 DFT/TDDFT 计算研究了 ICT 对这些荧光团光物理性质的影响。还在不同溶剂中测量了荧光寿命。我们所有的发现揭示了结构和发射性质之间的微妙相互作用,因此具有更广泛的通用性。由于 CT 到 LE 的强度比可以用作传感指数,因此双发射荧光团也可以用于设计分子识别系统。我们设想,我们的研究对于开发具有预定光物理性质的新型荧光团具有重要意义,这些荧光团可能在化学、生物学和材料科学中得到广泛应用。